Results for 'intrinsically disordered protein'

1000+ found
Order:
  1.  13
    Intrinsically Disordered Proteins and Desiccation Tolerance: Elucidating Functional and Mechanistic Underpinnings of Anhydrobiosis.Thomas C. Boothby & Gary J. Pielak - 2017 - Bioessays 39 (11):1700119.
    Over 300 years ago the father of microscopy, Antonie van Leeuwenhoek, observed dried rotifers “coming back to life” upon rehydration. Since then, scientists have been fascinated by the enduring mystery of how certain organisms survive losing essentially drying out completely. Historically sugars, such as the disaccharide trehalose, have been viewed as major functional mediators of desiccation tolerance. However, some desiccation tolerant organisms do not produce this sugar, hinting that additional mediators, and potentially novel mechanisms exist. It has become apparent that (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  2.  5
    Man does not live by intrinsically unstructured proteins alone: The role of structured regions in aggregation.Francesco A. Aprile, Piero Andrea Temussi & Annalisa Pastore - 2021 - Bioessays 43 (11):2100178.
    Protein misfolding is a topic that is of primary interest both in biology and medicine because of its impact on fundamental processes and disease. In this review, we revisit the concept of protein misfolding and discuss how the field has evolved from the study of globular folded proteins to focusing mainly on intrinsically unstructured and often disordered regions. We argue that this shift of paradigm reflects the more recent realisation that misfolding may not only be an (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  3.  18
    Close encounters of the third kind: disordered domains and the interactions of proteins.Peter Tompa, Monika Fuxreiter, Christopher J. Oldfield, Istvan Simon, A. Keith Dunker & Vladimir N. Uversky - 2009 - Bioessays 31 (3):328-335.
    Proteinprotein interactions are thought to be mediated by domains, which are autonomous folding units of proteins. Recently, a second type of interaction has been suggested, mediated by short segments termed linear motifs, which are related to recognition elements of intrinsically disordered regions. Here, we propose a third kind of proteinprotein recognition mechanism, mediated by disordered regions longer than 20–30 residues. Bioinformatics predictions and well‐characterized examples, such as the kinase‐inhibitory domain of Cdk inhibitors and (...)
    Direct download (3 more)  
     
    Export citation  
     
    Bookmark   2 citations  
  4.  49
    Close encounters of the third kind: disordered domains and the interactions of proteins.Peter Tompa, Monika Fuxreiter, Christopher J. Oldfield, Istvan Simon, A. Keith Dunker & Vladimir N. Uversky - 2009 - Bioessays 31 (3):328-335.
    Proteinprotein interactions are thought to be mediated by domains, which are autonomous folding units of proteins. Recently, a second type of interaction has been suggested, mediated by short segments termed linear motifs, which are related to recognition elements of intrinsically disordered regions. Here, we propose a third kind of proteinprotein recognition mechanism, mediated by disordered regions longer than 20–30 residues. Bioinformatics predictions and well‐characterized examples, such as the kinase‐inhibitory domain of Cdk inhibitors and (...)
    Direct download (3 more)  
     
    Export citation  
     
    Bookmark   2 citations  
  5.  22
    Parallel dynamics and evolution: Protein conformational fluctuations and assembly reflect evolutionary changes in sequence and structure.Joseph A. Marsh & Sarah A. Teichmann - 2014 - Bioessays 36 (2):209-218.
    Protein structure is dynamic: the intrinsic flexibility of polypeptides facilitates a range of conformational fluctuations, and individual protein chains can assemble into complexes. Proteins are also dynamic in evolution: significant variations in secondary, tertiary and quaternary structure can be observed among divergent members of a protein family. Recent work has highlighted intriguing similarities between these structural and evolutionary dynamics occurring at various levels. Here we review evidence showing how evolutionary changes in protein sequence and structure are (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   1 citation  
  6.  18
    RNA‐protein interactions: Central players in coordination of regulatory networks.Alexandros Armaos, Elsa Zacco, Natalia Sanchez de Groot & Gian Gaetano Tartaglia - 2021 - Bioessays 43 (2):2000118.
    Changes in the abundance of protein and RNA molecules can impair the formation of complexes in the cell leading to toxicity and death. Here we exploit the information contained in protein, RNA and DNA interaction networks to provide a comprehensive view of the regulation layers controlling the concentration‐dependent formation of assemblies in the cell. We present the emerging concept that RNAs can act as scaffolds to promote the formation ribonucleoprotein complexes and coordinate the post‐transcriptional layer of gene regulation. (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  7.  19
    How is functional specificity achieved through disordered regions of proteins?Rahul K. Das, Anuradha Mittal & Rohit V. Pappu - 2013 - Bioessays 35 (1):17-22.
    N‐type inactivation of potassium channels is controlled by cytosolic loops that are intrinsically disordered. Recent experiments have shown that the mechanism of N‐type inactivation through disordered regions can be stereospecific and vary depending on the channel type. Variations in mechanism occur despite shared coarse grain features such as the length and amino acid compositions of the cytosolic disordered regions. We have adapted a phenomenological model designed to explain how specificity in molecular recognition is achieved through (...) regions. We propose that the channel‐specific observations for N‐type inactivation represent distinct mechanistic choices for achieving function through conformational selection versus induced fit. It follows that the dominant mechanism for binding and specificity can be modulated through subtle changes in the amino acid sequences of disordered regions, which is interesting given that specificity in function is realized in the absence of autonomous folding. (shrink)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  8.  4
    When a domain is not a domain, and why it is important to properly filter proteins in databases.Clare-Louise Towse & Valerie Daggett - 2012 - Bioessays 34 (12):1060-1069.
    Membership in a protein domain database does not a domain make; a feature we realized when generating a consensus view of protein fold space with our consensus domain dictionary (CDD). This dictionary was used to select representative structures for characterization of the protein dynameome: the Dynameomics initiative. Through this endeavor we rejected a surprising 40% of the 1,695 folds in the CDD as being non‐autonomous folding units. Although some of this was due to the challenges of grouping (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  9.  7
    When a domain is not a domain, and why it is important to properly filter proteins in databases.Clare-Louise Towse & Valerie Daggett - 2012 - Bioessays 34 (12):1060-1069.
    Membership in a protein domain database does not a domain make; a feature we realized when generating a consensus view of protein fold space with our consensus domain dictionary (CDD). This dictionary was used to select representative structures for characterization of the protein dynameome: the Dynameomics initiative. Through this endeavor we rejected a surprising 40% of the 1,695 folds in the CDD as being non‐autonomous folding units. Although some of this was due to the challenges of grouping (...)
    Direct download (4 more)  
     
    Export citation  
     
    Bookmark  
  10.  17
    Intrinsically unstructured proteins evolve by repeat expansion.Peter Tompa - 2003 - Bioessays 25 (9):847-855.
    The proportion of the genome encoding intrinsically unstructured proteins increases with the complexity of organisms, which demands specific mechanism(s) for generating novel genetic material of this sort. Here it is suggested that one such mechanism is the expansion of internal repeat regions, i.e., coding micro‐ and minisatellites. An analysis of 126 known unstructured sequences shows the preponderance of repeats: the percentage of proteins with tandemly repeated short segments is much higher in this class (39%) than earlier reported for all (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   2 citations  
  11.  28
    RNAs, Phase Separation, and Membrane‐Less Organelles: Are Post‐Transcriptional Modifications Modulating Organelle Dynamics?Aleksej Drino & Matthias R. Schaefer - 2018 - Bioessays 40 (12):1800085.
    Membranous organelles allow sub‐compartmentalization of biological processes. However, additional subcellular structures create dynamic reaction spaces without the need for membranes. Such membrane‐less organelles (MLOs) are physiologically relevant and impact development, gene expression regulation, and cellular stress responses. The phenomenon resulting in the formation of MLOs is called liquid–liquid phase separation (LLPS), and is primarily governed by the interactions of multi‐domain proteins or proteins harboring intrinsically disordered regions as well as RNA‐binding domains. Although the presence of RNAs affects the (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   2 citations  
  12.  14
    Crowd-Sourcing of Membrane Fission.Marco M. Manni, Jure Derganc & Alenka Čopič - 2017 - Bioessays 39 (12):1700117.
    Fission of cellular membranes is ubiquitous and essential for life. Complex protein machineries, such as the dynamin and ESCRT spirals, have evolved to mediate membrane fission during diverse cellular processes, for example, vesicle budding. A new study suggests that non-specialized membrane-bound proteins can induce membrane fission through mass action due to protein crowding. Because up to 2/3 of the mass of cellular membranes is contributed by proteins, membrane protein crowding is an important physiological parameter. Considering the complexity (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  13. The intrinsic activity of the brain and its relation to levels and disorders of consciousness.Michele Farisco, Steven Laureys & Katinka Evers - 2017 - Mind and Matter 15 (2).
    Science and philosophy still lack an overarching theory of consciousness. We suggest that a further step toward it requires going beyond the view of the brain as input-output machine and focusing on its intrinsic activity, which may express itself in two distinct modalities, i.e. aware and unaware. We specifically investigate the predisposition of the brain to evaluate and to model the world. These intrinsic activities of the brain retain a deep relation with consciousness. In fact the ability of the brain (...)
    No categories
     
    Export citation  
     
    Bookmark   8 citations  
  14.  80
    Intrinsic functional network organization in high-functioning adolescents with autism spectrum disorder.Elizabeth Redcay, Joseph M. Moran, Penelope L. Mavros, Helen Tager-Flusberg, John D. E. Gabrieli & Susan Whitfield-Gabrieli - 2013 - Frontiers in Human Neuroscience 7.
  15.  7
    Altered intrinsic brain activity and connectivity in unaffected parents of individuals with autism spectrum disorder: a resting-state fMRI study.Xiang-Wen Zhu, Li-Li Zhang, Zong-Ming Zhu, Luo-Yu Wang, Zhong-Xiang Ding & Xiang-Ming Fang - 2022 - Frontiers in Human Neuroscience 16:997150.
    Objectives: Autism spectrum disorder (ASD) is a juvenile onset neurodevelopmental disorder with social impairment and stereotyped behavior as the main symptoms. Unaffected relatives may also exhibit similar ASD features due to genetic factors. Although previous studies have demonstrated atypical brain morphological features as well as task-state brain function abnormalities in unaffected parents with ASD children, it remains unclear the pattern of brain function in the resting state.Methods: A total of 42 unaffected parents of ASD children (pASD) and 39 age-, sex-, (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  16.  10
    Shifted intrinsic connectivity of central executive and salience network in borderline personality disorder.Anselm Doll - 2013 - Frontiers in Human Neuroscience 7.
  17. Decreased Intrinsic Functional Connectivity in First-Episode, Drug-Naive Adolescents With Generalized Anxiety Disorder.Fan Yang, Linlin Fan, Tianyi Zhai, Ying Lin, Yuyin Wang, Junji Ma, Mei Liao, Yan Zhang, Lingjiang Li, Linyan Su & Zhengjia Dai - 2019 - Frontiers in Human Neuroscience 12.
  18.  38
    Aberrant Intrinsic Connectivity of Hippocampus and Amygdala Overlap in the Fronto-Insular and Dorsomedial-Prefrontal Cortex in Major Depressive Disorder.Masoud Tahmasian, David C. Knight, Andrei Manoliu, Dirk Schwerthöffer, Martin Scherr, Chun Meng, Junming Shao, Henning Peters, Anselm Doll, Habibolah Khazaie, Alexander Drzezga, Josef Bäuml, Claus Zimmer, Hans Förstl, Afra M. Wohlschläger, Valentin Riedl & Christian Sorg - 2013 - Frontiers in Human Neuroscience 7.
  19.  17
    Protein disulfide isomerase is regulated in multiple ways: Consequences for conformation, activities, and pathophysiological functions.Lei Wang, Jiaojiao Yu & Chih-Chen Wang - 2021 - Bioessays 43 (3):2000147.
    Protein disulfide isomerase (PDI) is one of the most abundant and critical protein folding catalysts in the endoplasmic reticulum of eukaryotic cells. PDI consists of four thioredoxin domains and interacts with a wide range of substrate and partner proteins due to its intrinsic conformational flexibility. PDI plays multifunctional roles in a variety of pathophysiological events, both as an oxidoreductase and a molecular chaperone. Recent studies have revealed that the conformation and activity of PDI can be regulated in multiple (...)
    No categories
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  20.  8
    Protein Phosphorylation Dynamics: Unexplored Because of Current Methodological Limitations.Alain Robichon - 2020 - Bioessays 42 (4):1900149.
    The study of intrinsic phosphorylation dynamics and kinetics in the context of complex protein architecture in vivo has been challenging: Method limitations have prevented significant advances in the understanding of the highly variable turnover of phosphate groups, synergy, and cooperativity between P‐sites. However, over the last decade, powerful analytical technologies have been developed to determine the full catalog of the phosphoproteome for many species. The curated databases of phospho sites found by mass spectrometry analysis and the computationally predicted sites (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  21.  13
    Motor protein control of ion flux is an early step in embryonic left–right asymmetry.Michael Levin - 2003 - Bioessays 25 (10):1002-1010.
    The invariant left–right asymmetry of animal body plans raises fascinating questions in cell, developmental, evolutionary, and neuro‐biology. While intermediate mechanisms (e.g., asymmetric gene expression) have been well‐characterized, very early steps remain elusive. Recent studies suggested a candidate for the origins of asymmetry: rotary movement of extracellular morphogens by cilia during gastrulation. This model is intellectually satisfying, because it bootstraps asymmetry from the intrinsic biochemical chirality of cilia. However, conceptual and practical problems remain with this hypothesis, and the genetic data is (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   4 citations  
  22.  21
    Motor protein control of ion flux is an early step in embryonic left–right asymmetry.Michael Levin - 2003 - Bioessays 25 (10):1002-1010.
    The invariant left–right asymmetry of animal body plans raises fascinating questions in cell, developmental, evolutionary, and neuro‐biology. While intermediate mechanisms (e.g., asymmetric gene expression) have been well‐characterized, very early steps remain elusive. Recent studies suggested a candidate for the origins of asymmetry: rotary movement of extracellular morphogens by cilia during gastrulation. This model is intellectually satisfying, because it bootstraps asymmetry from the intrinsic biochemical chirality of cilia. However, conceptual and practical problems remain with this hypothesis, and the genetic data is (...)
    Direct download (3 more)  
     
    Export citation  
     
    Bookmark   4 citations  
  23.  8
    Ribosomal protein autoantibodies in systemic lupus erythematosus.Keith Elkon, Eloisa Bonfa, Susan Skelly, Herbert Weissbach & Nathan Brot - 1987 - Bioessays 7 (6):258-261.
    Autoantibodies to three eukaryotic 60S ribosomal phosphoproteins P0, P1 and P2 have been found in the sera of 10–20% of patients with systemic lupus erythematosus (SLE). These three proteins share a common epitope contained within the carboxy terminal 22 amino acids of each protein. Because central nervous system disturbances, with major behavioural disorders, occur in a significant fraction of SLE patients, the antiribosomal autoantibodies were measured in this subset of SLE individuals to determine whether or not there was an (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  24.  29
    Intrinsic neuronal determinants that promotes axonal sprouting and elongation.Pico Caroni - 1997 - Bioessays 19 (9):767-775.
    Nerve processes elongate, branch and form synaptic contacts in a highly regulated and specific manner. Long‐distance axon elongation is restricted to the main phase of axon formation during development, but can be reinduced upon lesions in the adult (regeneration). It correlates with the expression of defined genes, including proteins involved in signalling (e.g. src, NCAM, integrins), transcription factors (e.g. c‐jun) and structural proteins (e.g. actin and tubulin isoforms). Activation of an axon elongation program may require bcl‐2. The formation and growth (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  25.  3
    Order out of disorder: Regulation of endonuclease activity during eukaryotic mismatch repair.Claire Cupples - 2023 - Bioessays 45 (9):2300124.
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  26.  33
    Aggregation of polyQ‐extended proteins is promoted by interaction with their natural coiled‐coil partners.Spyros Petrakis, Martin H. Schaefer, Erich E. Wanker & Miguel A. Andrade-Navarro - 2013 - Bioessays 35 (6):503-507.
    Polyglutamine (polyQ) diseases are genetically inherited neurodegenerative disorders. They are caused by mutations that result in polyQ expansions of particular proteins. Mutant proteins form intranuclear aggregates, induce cytotoxicity and cause neuronal cell death. Protein interaction data suggest that polyQ regions modulate interactions between coiled‐coil (CC) domains. In the case of the polyQ disease spinocerebellar ataxia type‐1 (SCA1), interacting proteins with CC domains further enhance aggregation and toxicity of mutant ataxin‐1 (ATXN1). Here, we suggest that CC partners interacting with the (...)
    Direct download (5 more)  
     
    Export citation  
     
    Bookmark   1 citation  
  27.  76
    Disordered Actions: A Moral Analysis of Lying and Homosexual Activity.John Skalko - 2019 - Editiones Scholasticae.
    Just fifteen years ago, the common non-religious consensus was that homosexual acts were immoral. Within one decade, however, this consensus waned. The secular majority no longer held, as they previously did, that such actions are morally bad. What explains this sudden change? One explanation is that many conservatives lacked adequate philosophical tools to explain the foundations of the earlier historical consensus. Another is that modern research has shown that there never existed any solid philosophical grounds for calling such actions immoral (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  28.  21
    Stuttering: A Disorder of Energy Supply to Neurons?Per A. Alm - 2021 - Frontiers in Human Neuroscience 15.
    Stuttering is a disorder characterized by intermittent loss of volitional control of speech movements. This hypothesis and theory article focuses on the proposal that stuttering may be related to an impairment of the energy supply to neurons. Findings from electroencephalography, brain imaging, genetics, and biochemistry are reviewed: Analyses of the EEG spectra at rest have repeatedly reported reduced power in the beta band, which is compatible with indications of reduced metabolism. Studies of the absolute level of regional cerebral blood flow (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  29.  14
    Fanconi anaemia proteins: Major roles in cell protection against oxidative damage.Giovanni Pagano & Hagop Youssoufian - 2003 - Bioessays 25 (6):589-595.
    Fanconi anaemia (FA) is a cancer‐prone genetic disorder that is characterised by cytogenetic instability and redox abnormalities. Although rare subtypes of FA (B, D1 and D2) have been implicated in DNA repair through links with BRCA1 and BRCA2, such a role has yet to be demonstrated for gene products of the common subtypes. Instead, these products have been strongly implicated in xenobiotic metabolism and redox homeostasis through interactions of FANCC with cytochrome P‐450 reductase and with glutathione S‐transferase, and of FANCG (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  30.  21
    Intrinsic Feedbacks in MAPK Signaling Cascades Lead to Bistability and Oscillations.Jacques-Alexandre Sepulchre & Alejandra C. Ventura - 2013 - Acta Biotheoretica 61 (1):59-78.
    Previous studies have demonstrated that double phosphorylation of a protein can lead to bistability if some conditions are fulfilled. It was also shown that the signaling behavior of a covalent modification cycle can be quantitatively and, more importantly, qualitatively modified when this cycle is coupled to a signaling pathway as opposed to being isolated. This property was named retroactivity. These two results are studied together in this paper showing the existence of interesting phenomena—oscillations and bistability—in signaling cascades possessing at (...)
    Direct download (3 more)  
     
    Export citation  
     
    Bookmark  
  31.  10
    Information Processing in Affective Disorders: Did an Ancient Peptide Regulating Intercellular Metabolism Become Co‐Opted for Noxious Stress Sensing?David A. Lovejoy & David W. Hogg - 2020 - Bioessays 42 (9):2000039.
    Affective disorders arise in stressful situations from aberrant sensory information integration that affects energetic nutrient (i.e., glucose) utilization to the cognitive centers of the brain. Because energy flow is mediated by molecular signals and receptors that evolved before the first complex brains, the phylogenetically oldest signaling systems are essential in the etiology of affective disorders. The corticotropin‐releasing factor (CRF) peptide subfamily is a phylogenetically old metazoan peptide family and is pivotal for regulating organismal energy response associated with stress. Highly conserved, (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   1 citation  
  32.  5
    Asperger's Syndrome, Bipolar Disorder and the Relation between Mood, Cognition, and Well‐Being.Laurens Landeweerd - 2011 - In Julian Savulescu, Ruud ter Meulen & Guy Kahane (eds.), Enhancing Human Capacities. Blackwell. pp. 207–217.
    This chapter highlights the complexity of the relationship between enhancement of mood and cognition on the one hand and the improvement of people's well‐being on the other. To do so, two psychiatric conditions, Asperger's syndrome and bipolar disorder, are presented in the chapter. Even though there are both negative and positive aspects to Asperger's syndrome or to bipolar disorders, taking away even these negative aspects would not necessarily promote well‐being. It might also be impossible to isolate the positive aspects of (...)
    No categories
    Direct download  
     
    Export citation  
     
    Bookmark  
  33.  30
    Chaperoning stem cells: a role for heat shock proteins in the modulation of stem cell self‐renewal and differentiation?Earl Prinsloo, Mokgadi M. Setati, Victoria M. Longshaw & Gregory L. Blatch - 2009 - Bioessays 31 (4):370-377.
    Self‐renewal and differentiation of stem cells are tightly regulated processes subject to intrinsic and extrinsic signals. Molecular chaperones and co‐chaperones, especially heat shock proteins (Hsp), are ubiquitous molecules involved in the modulation of protein conformational and complexation states. The function of Hsp, which are typically associated with stress response and tolerance, is well characterized in differentiated cells, while their role in stem cells remains unclear. It appears that embryonic stem cells exhibit increased stress tolerance and concomitant high levels of (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  34.  67
    Body Integrity Identity Disorder and the Ethics of Mutilation.Robert Song - 2013 - Studies in Christian Ethics 26 (4):487-503.
    The rare phenomenon in which a person desires amputation of a healthy limb, now often termed body integrity identity disorder, raises central questions for biomedical ethics. Standard bioethical discussions of surgical intervention in such cases fail to address the meaning of bodily integrity, which is intrinsic to a theological understanding of the goodness of the body. However, moral theological responses are liable to assume that such interventions necessarily represent an implicitly docetic manipulation of the body. Through detailed attention to the (...)
    Direct download (3 more)  
     
    Export citation  
     
    Bookmark   3 citations  
  35.  48
    A relational-constructionist account of protein macrostructure and function.Gil Santos, Gabriel Vallejos & Davide Vecchi - 2020 - Foundations of Chemistry 22 (3):363-382.
    One of the foundational problems of biochemistry concerns the conceptualisation of the relationship between the composition, structure and function of macromolecules like proteins. Part of the recent philosophical literature displays a reductionist bias, that is, the endorsement of a form of microstructuralism mirroring an out-dated biochemical conceptualisation. We shall argue that such microstructuralist approaches are ultimately committed to a potentialist form of micro-predeterminism whereby the macrostructure and function of proteins is accounted for solely in terms of the intrinsic properties and (...)
    Direct download (3 more)  
     
    Export citation  
     
    Bookmark   3 citations  
  36.  5
    Glycosylation and stem cells: Regulatory roles and application of iPSCs in the study of glycosylation‐related disorders.Ryan P. Berger, Michelle Dookwah, Richard Steet & Stephen Dalton - 2016 - Bioessays 38 (12):1255-1265.
    Glycosylation refers to the co‐ and post‐translational modification of protein and lipids by monosaccharides or oligosaccharide chains. The surface of mammalian cells is decorated by a heterogeneous and highly complex array of protein and lipid linked glycan structures that vary significantly between different cell types, raising questions about their roles in development and disease pathogenesis. This review will begin by focusing on recent findings that define roles for cell surface protein and lipid glycosylation in pluripotent stem cells (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  37.  6
    Brain regionalization by Polycomb‐group proteins and chromatin accessibility.Hikaru Eto & Yusuke Kishi - 2021 - Bioessays 43 (11):2100155.
    During brain development, neural precursor cells (NPCs) in different brain regions produce different types of neurons, and each of these regions plays a different role in the adult brain. Therefore, precise regionalization is essential in the early stages of brain development, and irregular regionalization has been proposed as the cause of neurodevelopmental disorders. The mechanisms underlying brain regionalization have been well studied in terms of morphogen‐induced expression of critical transcription factors for regionalization. NPC potential in different brain regions is defined (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  38.  13
    PPI-GA: A Novel Clustering Algorithm to Identify Protein Complexes within Protein-Protein Interaction Networks Using Genetic Algorithm.Naeem Shirmohammady, Habib Izadkhah & Ayaz Isazadeh - 2021 - Complexity 2021:1-14.
    Comprehensive analysis of proteins to evaluate their genetic diversity, study their differences, and respond to the tensions is the main subject of an interdisciplinary field of study called proteomics. The main objective of the proteomics is to detect and quantify proteins and study their post-translational modifications and interactions using protein chemistry, bioinformatics, and biology. Any disturbance in proteins interactive network can act as a source for biological disorders and various diseases such as Alzheimer and cancer. Most current computational methods (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  39.  12
    Eclipsed distribution: A phenomenon of dual targeting of protein and its significance.Neta Regev-Rudzki & Ophry Pines - 2007 - Bioessays 29 (8):772-782.
    One of the surprises from genome sequencing projects is the apparently small number of predicted genes in different eukaryotic cells, particularly human. One possible reason for this ‘shortage’ of genes is multiple distribution of proteins; a single protein is targeted to more than one subcellular compartment and consequently participates in different biochemical pathways and might have completely different functions. Indeed, in recent years, there have been reports on proteins that were found to be localized in cellular compartments other than (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  40.  19
    The pleckstrin homology domain: An intriguing multifunctional protein module.Gerry Shaw - 1996 - Bioessays 18 (1):35-46.
    Pleckstrin homology (PH) domains are a family of compact protein modules defined by sequences of roughly 100 amino acids. These domains are common in vertebrate, Drosophila, C. elegans and yeast proteins, suggesting an early origin and fundamental importance to eukaryotic biology. Many enzymes which have important regulatory functions contain PH domains, and mutant forms of several such proteins are implicated in oncogenesis and developmental disorders. Numerous recent studies show that PH domains bind various proteins and inositolphosphates. Here I discuss (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   3 citations  
  41. Aspects of Reductive Explanation in Biological Science: Intrinsicality, Fundamentality, and Temporality.Andreas Hüttemann & Alan C. Love - 2011 - British Journal for the Philosophy of Science 62 (3):519-549.
    The inapplicability of variations on theory reduction in the context of genetics and their irrelevance to ongoing research has led to an anti-reductionist consensus in philosophy of biology. One response to this situation is to focus on forms of reductive explanation that better correspond to actual scientific reasoning (e.g. part–whole relations). Working from this perspective, we explore three different aspects (intrinsicality, fundamentality, and temporality) that arise from distinct facets of reductive explanation: composition and causation. Concentrating on these aspects generates new (...)
    Direct download (8 more)  
     
    Export citation  
     
    Bookmark   27 citations  
  42.  14
    The DAP kinase family of pro‐apoptotic proteins: novel players in the apoptotic game.Donat Kögel, Jochen H. M. Prehn & Karl Heinz Scheidtmann - 2001 - Bioessays 23 (4):352-358.
    The DAP (Death Associated Protein) kinase family is a novel subfamily of pro-apoptotic serine/threonine kinases. All five DAP kinase family members identified to date are ubiquitously expressed in various tissues and are capable of inducing apoptosis. The sequence homology of the five kinases is largely restricted to the N-terminal kinase domain. In contrast, the adjacent C-terminal regions are very diverse and link individual family members to specific signal transduction pathways. There is increasing evidence that DAP kinase family members are (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  43.  19
    Potential epigenetic mechanisms in psychotherapy: a pilot study on DNA methylation and mentalization change in borderline personality disorder.Yamil Quevedo, Linda Booij, Luisa Herrera, Cristobal Hernández & Juan Pablo Jiménez - 2022 - Frontiers in Human Neuroscience 16:955005.
    Genetic and early environmental factors are interwoven in the etiology of Borderline Personality Disorder (BPD). Epigenetic mechanisms offer the molecular machinery to adapt to environmental conditions. There are gaps in the knowledge about how epigenetic mechanisms are involved in the effects of early affective environment, development of BPD, and psychotherapy response. We reviewed the available evidence of the effects of psychotherapy on changes in DNA methylation and conducted a pilot study in a sample of 11 female adolescents diagnosed with BPD, (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  44.  24
    Cell cycle control by oscillating regulatory proteins in Caulobacter crescentus.Julia Holtzendorff, Jens Reinhardt & Patrick H. Viollier - 2006 - Bioessays 28 (4):355-361.
    Significant strides have been made in recent years towards understanding the molecular basis of cell cycle progression in the model bacterium Caulobacter crescentus. At the heart of cell cycle regulation is a multicomponent transcriptional feedback loop, governing the production of successive regulatory waves or pulses of at least three master regulatory proteins. These oscillating master regulators direct the execution of phase‐specific events and, importantly, through intrinsic genetic switches not only determine the length of a given phase, but also provide the (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  45.  9
    Shared Characteristics of Intrinsic Connectivity Networks Underlying Interoceptive Awareness and Empathy.Teodora Stoica & Brendan Depue - 2020 - Frontiers in Human Neuroscience 14.
    Awareness of internal bodily sensations and its connection to complex socioemotional abilities like empathy has been postulated, yet the functional neural circuitry they share remains poorly understood. The present fMRI study employs independent component analysis to investigate which empathy facet shares resting-state functional connectivity and/or BOLD variability with IA. Healthy participants viewed an abstract nonsocial movie demonstrated to evoke strong rsFC in brain networks resembling rest, and resultant rsFC and rsBOLD data were correlated with self-reported empathy and IA questionnaires. We (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  46.  7
    Cytokine signal transduction and the JAK family of protein tyrosine kinases.Andrew F. Wilks & Ailsa G. Harpur - 1994 - Bioessays 16 (5):313-320.
    Cytokine receptors fall into two basic classes: those with their own intrinsic protein tyrosine kinase (PTK) domain, and those lacking a PTK domain. Nonetheless, PTK activity plays a fundamental role in the signal transduction processes lying downstream of both classes of receptor. It now seems likely that many of those cytokine receptors that lack their own PTK domain use members of the JAK family of PTKs to propagate their intracellular signals. Moreover, the involvement of the JAK kinases in a (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  47. Reaching across the abyss: recent advances in functional magnetic resonance imaging and their potential relevance to disorders of consciousness.Athena Demertzi & Mario Stanziano - unknown
    Disorders of consciousness (DOC) raise profound scientific, clinical, ethical, and philosophical issues. Growing knowledge on fundamental principles of brain organization in healthy individuals offers new opportunities for a better understanding of residual brain function in DOCs. We here discuss new perspectives derived from a recently proposed scheme of brain organization underlying consciousness in healthy individuals. In this scheme, thalamo-cortical networks can be divided into two, often antagonistic, global systems: (i) a system of externally oriented, sensory-motor networks (the ‘‘extrinsic’’ system); and (...)
     
    Export citation  
     
    Bookmark  
  48.  6
    Neuropsychiatric Symptoms of COVID-19 Explained by SARS-CoV-2 Proteins’ Mimicry of Human Protein Interactions.Hale Yapici-Eser, Yunus Emre Koroglu, Ozgur Oztop-Cakmak, Ozlem Keskin, Attila Gursoy & Yasemin Gursoy-Ozdemir - 2021 - Frontiers in Human Neuroscience 15.
    The first clinical symptoms focused on the presentation of coronavirus disease 2019 have been respiratory failure, however, accumulating evidence also points to its presentation with neuropsychiatric symptoms, the exact mechanisms of which are not well known. By using a computational methodology, we aimed to explain the molecular paths of COVID-19 associated neuropsychiatric symptoms, based on the mimicry of the human protein interactions with SARS-CoV-2 proteins.Methods: Available 11 of the 29 SARS-CoV-2 proteins’ structures have been extracted from Protein Data (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  49.  44
    Ca2+ -Dependent Hyperpolarization Pathways in Sleep Homeostasis and Mental Disorders.Shoi Shi & Hiroki R. Ueda - 2018 - Bioessays 40 (1):1700105.
    Although we are beginning to understand the neuronal and biochemical nature of sleep regulation, questions remain about how sleep is homeostatically regulated. Beyond its importance in basic physiology, understanding sleep may also shed light on psychiatric and neurodevelopmental disorders. Recent genetic studies in mammals revealed several non-secretory proteins that determine sleep duration. Interestingly, genes identified in these studies are closely related to psychiatric and neurodevelopmental disorders, suggesting that the sleep-wake cycle shares some common mechanisms with these disorders. Here we review (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  50.  25
    Lipids under stress – a lipidomic approach for the study of mood disorders.André Miguel Miranda & Tiago Gil Oliveira - 2015 - Bioessays 37 (11):1226-1235.
    The emerging field of lipidomics has identified lipids as key players in disease physiology. Their physicochemical diversity allows precise control of cell structure and signaling events through modulation of membrane properties and trafficking of proteins. As such, lipids are important regulators of brain function and have been implicated in neurodegenerative and mood disorders. Importantly, environmental chronic stress has been associated with anxiety and depression and its exposure in rodents has been extensively used as a model to study these diseases. With (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
1 — 50 / 1000