Results for 'dormant ribosomes'

223 found
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  1. Ribosomal dormancy at the nexus of ribosome homeostasis and protein synthesis.Saloni Koli & Sunil Shetty - forthcoming - Bioessays:2300247.
    Dormancy or hibernation is a non‐proliferative state of cells with low metabolic activity and gene expression. Dormant cells sequester ribosomes in a translationally inactive state, called dormant/hibernating ribosomes. These dormant ribosomes are important for the preservation of ribosomes and translation shut‐off. While recent studies attempted to elucidate their modes of formation, the regulation and roles of the diverse dormant ribosomal populations are still largely understudied. The mechanistic details of the formation of (...) ribosomes in stress and especially their disassembly during recovery remain elusive. In this review, we discuss the roles of dormant ribosomes and their potential regulatory mechanisms. Furthermore, we highlight the paradigms that need to be answered in the field of ribosomal dormancy. (shrink)
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  2.  26
    Ribosomal Proteins Control Tumor Suppressor Pathways in Response to Nucleolar Stress.Frédéric Lessard, Léa Brakier-Gingras & Gerardo Ferbeyre - 2019 - Bioessays 41 (3):1800183.
    Ribosome biogenesis includes the making and processing of ribosomal RNAs, the biosynthesis of ribosomal proteins from their mRNAs in the cytosol and their transport to the nucleolus to assemble pre‐ribosomal particles. Several stresses including cellular senescence reduce nucleolar rRNA synthesis and maturation increasing the availability of ribosome‐free ribosomal proteins. Several ribosomal proteins can activate the p53 tumor suppressor pathway but cells without p53 can still arrest their proliferation in response to an imbalance between ribosomal proteins and mature rRNA production. Recent (...)
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  3.  5
    Orchestrating ribosomal RNA folding during ribosome assembly.Michaela Oborská-Oplová, Stefan Gerhardy & Vikram Govind Panse - 2022 - Bioessays 44 (8):2200066.
    Construction of the eukaryotic ribosome is a complex process in which a nascent ribosomal RNA (rRNA) emerging from RNA Polymerase I hierarchically folds into a native three‐dimensional structure. Modular assembly of individual RNA domains through interactions with ribosomal proteins and a myriad of assembly factors permit efficient disentanglement of the error‐prone RNA folding process. Following these dynamic events, long‐range tertiary interactions are orchestrated to compact rRNA. A combination of genetic, biochemical, and structural studies is now providing clues into how a (...)
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  4.  53
    Dormant and active emotional states.Rowland Stout - 2022 - Synthese 200 (2).
    The paper is concerned with the metaphysics of emotion. It defends the claim that all emotional states, whether dormant or active, are dispositional, arguing against the prevailing view that dispositional emotional states are dispositions to go into actual emotional states. A clear distinction may be made between first-order and second-order emotional dispositions, where second-order emotional dispositions are dispositions of emotional sensitivity and first-order emotional dispositions are the emotional states themselves. Active emotional states are treated as dispositional emotional states in (...)
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  5.  11
    Ribosomal protein uS3 in cell biology and human disease: Latest insights and prospects.Dmitri Graifer & Galina Karpova - 2020 - Bioessays 42 (12):2000124.
    The conserved ribosomal protein uS3 in eukaryotes has long been known as one of the essential components of the small (40S) ribosomal subunit, which is involved in the structure of the 40S mRNA entry pore, ensuring the functioning of the 40S subunit during translation initiation. Besides, uS3, being outside the ribosome, is engaged in various cellular processes related to DNA repair, NF‐kB signaling pathway and regulation of apoptosis. This review is devoted to recent data opening new horizons in understanding the (...)
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  6.  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 association. (...)
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  7.  16
    Do ribosomes regulate mitochondrial RNA synthesis?Howard T. Jacobs - 1989 - Bioessays 11 (1):27-34.
    The levels of different classes of mitochondrially encoded transcripts are developmentally regulated in sea urchin embryos, as a result of selection between mutually exclusive synthetic pathways. I propose a simple model to explain these observations, based on a dual role for mitochondrial ribosomes and translation factors in RNA synthesis as well as in translation. This effect may be exerted either at the transcriptional or post‐transcriptional level (or both), and is potentially generalizable to mammalian mtDNA and to other systems.
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  8.  19
    The ribosome: lifting the veil from a fascinating organelle.Warren P. Tate & Elizabeth S. Poole - 2004 - Bioessays 26 (5):582-588.
    It was first suggested that the ribosome is associated with protein synthesis in the 1950s. Initially, its components were revealed as surface‐accessible proteins and as molecules of RNA apparently providing a scaffold for subunit shape. Attributing function to the proteins proved difficult, although bacterial protein L11 proved essential for binding one of the decoding protein release factors (RFs). With the discovery that RNA could be a catalyst, interest focussed on the rRNA that, in partnership with mRNA and tRNAs, could potentially (...)
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  9.  9
    The cytoplasmic structure hypothesis for ribosome assembly, vertical inheritance, and phylogeny.David S. Thaler - 2009 - Bioessays 31 (7):774-783.
    Fundamental questions in evolution concern deep divisions in the living world and vertical versus horizontal information transfer. Two contrasting views are: (i) three superkingdoms Archaea, Eubacteria, and Eukarya based on vertical inheritance of genes encoding ribosomes; versus (ii) a prokaryotic/eukaryotic dichotomy with unconstrained horizontal gene transfer (HGT) among prokaryotes. Vertical inheritance implies continuity of cytoplasmic and structural information whereas HGT transfers only DNA. By hypothesis, HGT of the translation machinery is constrained by interaction between new ribosomal gene products and (...)
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  10.  6
    Concerted evolution of ribosomal DNA: Somatic peace amid germinal strife.David Haig - 2021 - Bioessays 43 (12):2100179.
    Most eukaryotes possess many copies of rDNA. Organismal selection alone cannot maintain rRNA function because the effects of mutations in one rDNA are diluted by the presence of many other rDNAs. rRNA quality is maintained by processes that increase homogeneity of rRNA within, and heterogeneity among, germ cells thereby increasing the effectiveness of cellular selection on ribosomal function. A successful rDNA repeat will possess adaptations for spreading within tandem arrays by intranuclear selection. These adaptations reside in the non‐coding regions of (...)
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  11.  44
    Dormant Dispositions, Agent Value, and the Trinity.Samuel R. Lebens & Dale Tuggy - 2019 - Journal of Analytic Theology 7 (1):142-155.
    In this paper we argue that the moral value of an agent is determined solely by their dispositions to act intentionally and freely. We then put this conclusion to work. It resolves a putative moral paradox first posed by Saul Smilansky, and it undermines a prominent line of argument for a variety of Trinitarian theology. Finally, we derive our conclusion about the moral worth of agents not only from our initial series of thought experiments, but also from Abrahamic theism itself. (...)
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  12.  17
    Transcriptional regulation of mammalian ribosomal RNA genes.Masami Muramatsu - 1985 - Bioessays 3 (6):263-265.
    Eukaryotic genes are divided into three categories according to the machineries by which they are transcribed. Ribosomal RNA genes (rDNA) are the only ones that are transcribed by RNA polymerase I and are under different control from other genes transcribed by RNA polymerase II or III. None the less, the regulation of rDNA is of prime interest in view of its close relationship to cell growth and differentiation. In this review I shall discuss the recent progress in the study of (...)
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  13.  11
    Insaisissable Belle au bois dormant.Laurent Delabre & Léo Gerville-Réache - 2015 - Philosophia Scientiae 19:251-269.
    Dans cet article sont commentées trois tentatives de résolution de la Belle au bois dormant, la célèbre énigme d'auto-localisation qui engendre un paradoxe probabiliste troublant : l'arbitrage fréquentiste propose une lecture ontologique des probabilités lorsque l'approche bayésienne atteint une limite ; l'analogie avec le Monty Hall s'efforce de penser de nouvelles règles de révision doxastique communes aux deux problèmes ; enfin, la leçon des compagnons encourage le partage et l'harmonisation d'estimations probabilistes entre agents rationnels. Chacun des trois arguments est (...)
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  14.  2
    To aggregate or not to aggregate – Is it a matter of the ribosome?Sebastian Iben - 2023 - Bioessays 45 (7):2200230.
    Neurodegenerative syndromes present as proteinopathies – does ribosomal infidelity contribute to the protein toxicity that is the driving force for neuronal cell loss? Intracellular and extracellular protein aggregates overwhelm the clearance capacity of cells and tissues. Proteins aggregate when hydrophobic residues are exposed. Hydrophobic residues become exposed when proteins are misfolded. Protein misfolding can originate from translational errors at the ribosome. Indeed, the most error‐prone process in gene expression is translation at the ribosome. Recent evidence indicates that manipulating the ribosomal (...)
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  15.  18
    The polypeptide tunnel exit of the mitochondrial ribosome is tailored to meet the specific requirements of the organelle.Steffi Gruschke & Martin Ott - 2010 - Bioessays 32 (12):1050-1057.
    The ribosomal polypeptide tunnel exit is the site where a variety of factors interact with newly synthesized proteins to guide them through the early steps of their biogenesis. In mitochondrial ribosomes, this site has been considerably modified in the course of evolution. In contrast to all other translation systems, mitochondrial ribosomes are responsible for the synthesis of only a few hydrophobic membrane proteins that are essential subunits of the mitochondrial respiratory chain. Membrane insertion of these proteins occurs co‐translationally (...)
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  16. Function of aggregated reticulocyte ribosomes in protein synthesis.Alfred Gierer - 1963 - J. Mol. Biol 6:148-157.
    Applying mild methods of preparation, part of the ribosomes of rabbit reticulocytes are found in aggregates (later called polyribosomes) of up to six ribosomal units. Upon treatment with RNA-ase, they desintegrate into single ribosomes. The fast-sedimenting aggregates are found to be more active in protein synthesis in terms of incorporation of radioactive amino acids, whereas the single ribosomes are more receptive to stimulation by the artificial messenger RNA poly-U. The findings indicate that the linkage of ribosomes (...)
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  17.  18
    Decoding the Ribosome.John Cramer - unknown
    emerging field of nanotechnology. Nanotechnology gets its name from the nanometer, a distance of 10 -9 meters or roughly the diameter of a molecule, and the term refers to the technology for structuring matter with precise control at the nanometer scale, atom-by-atom or molecule-by-molecule, to form a pre-specified pattern. In other words, nanotechnology is the general ability to build large or small structures to complex atomic specifications.
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  18.  28
    Synchronous tRNA movements during translocation on the ribosome are orchestrated by elongation factor G and GTP hydrolysis.Wolf Holtkamp, Wolfgang Wintermeyer & Marina V. Rodnina - 2014 - Bioessays 36 (10):908-918.
    The translocation of tRNAs through the ribosome proceeds through numerous small steps in which tRNAs gradually shift their positions on the small and large ribosomal subunits. The most urgent questions are: (i) whether these intermediates are important; (ii) how the ribosomal translocase, the GTPase elongation factor G (EF‐G), promotes directed movement; and (iii) how the energy of GTP hydrolysis is coupled to movement. In the light of recent advances in biophysical and structural studies, we argue that intermediate states of translocation (...)
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  19.  24
    Is Machiavellianism Dead or Dormant? The Perils of Researching a Secretive Construct.Daniel N. Jones & Steven M. Mueller - 2021 - Journal of Business Ethics 176 (3):535-549.
    Machiavellianism is a popular construct in research on ethics and organizational behavior. This research has demonstrated that Machiavellianism predicts a host of counterproductive, deviant, and unethical behaviors. However, individuals high in Machiavellianism also adapt to their organizational surroundings, engaging in unethical behavior only in certain situations. Nevertheless, the utility of Machiavellianism has been questioned. Meta-analyses have demonstrated that psychopathy out-predicts Machiavellianism for most antisocial outcomes. Thus, many researchers assume Machiavellianism is a derivative and redundant construct. However, researchers examining the utility (...)
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  20.  9
    Does a Ribosome Really Read? On the Cognitive Roots and Heuristic Value of Linguistic Metaphors in Molecular Genetics Part 2.Suren T. Zolyan - 2020 - Russian Journal of Philosophical Sciences 63 (2):46-62.
    We discuss the role of linguistic metaphors as a cognitive frame for the understanding of genetic information processing. The essential similarity between language and genetic information processing has been recognized since the very beginning, and many prominent scholars have noted the possibility of considering genes and genomes as texts or languages. Most of the core terms in molecular biology are based on linguistic metaphors. The processing of genetic information is understood as some operations on text – writing, reading and editing (...)
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  21.  7
    Does a Ribosome Really Read? On the Cognitive Roots and Heuristic Value of Linguistic Metaphors in Molecular Genetics. Part 1.Suren T. Zolyan - 2020 - Russian Journal of Philosophical Sciences 63 (1):101-115.
    We discuss the role of linguistic metaphors as a cognitive frame for the understanding of genetic information processing. The essential similarity between language and genetic information processing has been recognized since the very beginning, and many prominent scholars have noted the possibility of considering genes and genomes as texts or languages. Most of the core terms in molecular biology are based on linguistic metaphors. The processing of genetic information is understood as some operations on text – writing, reading and editing (...)
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  22.  3
    Vom Mikrosom zum Ribosom Strategien' der Repräsentation' 1935—1955.Hans-Jörg Rheinberger - 1995 - In Hans-Jörg Rheinberger & Michael Hagner (eds.), Experimentalisierung des Lebens: Experimentalsysteme in den Biologischen Wissenschaften 1850/1950. De Gruyter. pp. 162-187.
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  23.  2
    Does a Ribosome Really Read? On the Cognitive Roots and Heuristic Value of Linguistic Metaphors in Molecular Genetics. Part 2.Сурен Тигранович Золян - 2020 - Russian Journal of Philosophical Sciences 63 (2):46-62.
    We discuss the role of linguistic metaphors as a cognitive frame for the understanding of genetic information processing. The essential similarity between language and genetic information processing has been recognized since the very beginning, and many prominent scholars have noted the possibility of considering genes and genomes as texts or languages. Most of the core terms in molecular biology are based on linguistic metaphors. The processing of genetic information is understood as some operations on text – writing, reading and editing (...)
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  24.  1
    Does a Ribosome Really Read? On the Cognitive Roots and Heuristic Value of Linguistic Metaphors in Molecular Genetics. Part 2.Сурен Тигранович Золян - 2020 - Russian Journal of Philosophical Sciences 63 (2):46-62.
    We discuss the role of linguistic metaphors as a cognitive frame for the understanding of genetic information processing. The essential similarity between language and genetic information processing has been recognized since the very beginning, and many prominent scholars have noted the possibility of considering genes and genomes as texts or languages. Most of the core terms in molecular biology are based on linguistic metaphors. The processing of genetic information is understood as some operations on text – writing, reading and editing (...)
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  25.  5
    Spacers and processing of large ribosomal RNAs in Escherichia coli and mouse cells.D. Schlessinger, R. I. Bolla, R. Sirdeshmukh & J. R. Thomas - 1985 - Bioessays 3 (1):14-18.
    The formation of mature large rRNAs from larger primary transcripts is very different in bacterial and mammalian cells. In both, cotranscription can help to assure the coordinated production of various rRNA species. However, in bacteria, processing is ordered, initiated by cleavages at double‐stranded stems which enclose the mature sequences; several cleavages are required to produce each mature terminus; and the final steps occur in polysomes, apparently linked to continued protein synthesis. In mouse cells, in contrast, cleavages generate nearly all mature (...)
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  26.  4
    Rebirth of the translational machinery: The importance of recycling ribosomes.David J. Young & Nicholas R. Guydosh - 2022 - Bioessays 44 (4):2100269.
    Translation of the genetic code occurs in a cycle where ribosomes engage mRNAs, synthesize protein, and then disengage in order to repeat the process again. The final part of this process—ribosome recycling, where ribosomes dissociate from mRNAs—involves a complex molecular choreography of specific protein factors to remove the large and small subunits of the ribosome in a coordinated fashion. Errors in this process can lead to the accumulation of ribosomes at stop codons or translation of downstream open (...)
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  27.  78
    From Microsomes to Ribosomes: "Strategies" of "Representation". [REVIEW]Hans-Jörg Rheinberger - 1995 - Journal of the History of Biology 28 (1):49 - 89.
  28.  9
    La notion de ‘sème dormant’.Albert Chesneau - 1974 - Semiotica 11 (4).
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  29.  6
    Du « souvenir dormant de toutes choses » à la « mémoire involontaire » : remarques sur Schelling et Proust.Philipp Höfele - 2018 - Les Cahiers Philosophiques de Strasbourg 43:167-186.
    La contribution poursuit un double intérêt systématique : d’une part, il convient de mettre en évidence un lien entre les concepts de mémoire qui se trouvent respectivement dans Les Âges du monde de Schelling et dans la Recherche du temps perdu de Proust. D’autre part, il s’agit de faire apparaître des caractéristiques essentielles de la mémoire humaine. Il sera question premièrement de l’apparition du souvenir chez les deux auteurs, deuxièmement du déclenchement de la mémoire et de son contexte, troisièmement du (...)
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  30.  8
    Cryo‐electron microscopy as an investigative tool: the ribosome as an example.Joachim Frank - 2001 - Bioessays 23 (8):725-732.
    Cryo‐electron microscopy allows the visualization of macromolecules in their native state. Combined with techniques of three‐dimensional reconstruction, cryo‐EM images of single molecules can be used to study macromolecular interactions. The ribosome, a large RNA–protein complex with multiple binding interactions, is an excellent test case illustrating the power of these new techniques. Conformational changes during the binding of tRNA and protein factors to the ribosome can now be studied without the interference of crystal packing. Now that the first X‐ray structures of (...)
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  31.  18
    Mitogenesis and protein synthesis: A role for ribosomal protein S6 phosphorylation?Mary J. Stewart & George Thomas - 1994 - Bioessays 16 (11):809-815.
    It has been known for 20 years that the ribosomal protein S6 is rapidly phosphorylated when cells are stimulated to grow or divide. Furthermore, numerous studies have documented that there is a strong correlation between increases in S6 phosphorylation and protein synthesis, leading to the idea that S6 phosphorylation is involved in up‐regulating translation. In an attempt to define a mechanism by which S6 phosphorylation exerts translational control, other studies have focused on characterizing the sites of phosphorylation of this protein (...)
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  32.  23
    Peut-on témoigner tout en dormant?François Nault - 2015 - Laval Théologique et Philosophique 71 (1):41-55.
    François Nault | Résumé : Quand on évoque le sommeil des apôtres au jardin de Gethsémani, c’est généralement pour souligner la faiblesse des amis de Jésus, qui n’ont pas eu le courage de veiller avec lui, au moment où il en avait manifestement bien besoin. Mais le sommeil des apôtres ne pourrait-il pas être interprété plus positivement : comme un témoignage plutôt qu’une trahison? Ainsi l’auteur de cet article cherche à montrer que le sommeil peut nous faire avancer dans la (...)
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  33.  31
    Evolution of the Genetic Code: The Ribosome-Oriented Model.Marcello Barbieri - 2015 - Biological Theory 10 (4):301-310.
    There are currently three major theories on the origin and evolution of the genetic code: the stereochemical theory, the coevolution theory, and the error-minimization theory. The first two assume that the genetic code originated respectively from chemical affinities and from metabolic relationships between codons and amino acids. The error-minimization theory maintains that in primitive systems the apparatus of protein synthesis was extremely prone to errors, and postulates that the genetic code evolved in order to minimize the deleterious effects of the (...)
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  34.  25
    Quadruplet codons: One small step for a ribosome, one giant leap for proteins.Irene A. Chen & Michael Schindlinger - 2010 - Bioessays 32 (8):650-654.
  35.  7
    Le Baiser de la Belle au bois dormant ou : des péripéties encourues par la géographie linguistique depuis Jules Gilliéron.Hans Goebl - 2013 - Corpus 12:61-84.
    Partant du substrat intellectuel et scientifique sur lequel repose, en dernière analyse, l’Atlas linguistique de la France (ALF : 1902-1910) de Jules Gilliéron (1854-1926), cet article envisage l’évolution ultérieure de la géographie linguistique « atlantiste », surtout sous l’égide de Karl Jaberg (1877-1958) et Jakob Jud (1882-1952), auteurs de l’atlas italo-suisse AIS, et des promoteurs des Nouveaux atlas linguistiques de la France (NALFs) à partir de 1950. Il en appert que l’orientation théorique de base et la recherche inconditionnée de l’intercomparabilité (...)
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  36.  18
    A New Way to Discover IRESs in Pathology or Stress Conditions? Harnessing Latest High‐Throughput Technologies.Lei-Yun Wang, Jia-Jia Cui, Cheng-Xian Guo & Ji-Ye Yin - 2020 - Bioessays 42 (3):1900180.
    The cellular internal ribosomal entry site (IRES) is one of the most important elements to mediate cap‐independent translational initiation, especially under conditions of stress and pathology. However, a high‐throughput method to discover IRESs in these conditions is still lacking. Here, a possible way IRES long‐read sequencing based on the latest high‐throughput technologies is proposed to solve this problem. Based on this design, diversity and integrity of the transcriptome from original samples can be kept. The micro‐environment that stimulates or inhibits IRES (...)
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  37.  12
    Druggable differences: Targeting mechanistic differences between trans‐ translation and translation for selective antibiotic action.Pooja Srinivas, Kenneth C. Keiler & Christine M. Dunham - 2022 - Bioessays 44 (8):2200046.
    Bacteria use trans‐translation to rescue stalled ribosomes and target incomplete proteins for proteolysis. Despite similarities between tRNAs and transfer‐messenger RNA (tmRNA), the key molecule for trans‐translation, new structural and biochemical data show important differences between translation and trans‐translation at most steps of the pathways. tmRNA and its binding partner, SmpB, bind in the A site of the ribosome but do not trigger the same movements of nucleotides in the rRNA that are required for codon recognition by tRNA. tmRNA‐SmpB moves (...)
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  38.  4
    Benefits of co‐translational complex assembly for cellular fitness.Krishnendu Khan & Paul L. Fox - 2023 - Bioessays 45 (5):2300024.
    Complexes of two or more proteins form many, if not most, of the intracellular “machines” that execute physical and chemical work, and transmit information. Complexes can form from stochastic post‐translational interactions of fully formed proteins, but recent attention has shifted to co‐translational interactions in which the most common mechanism involves binding of a mature constituent to an incomplete polypeptide emerging from a translating ribosome. Studies in yeast have revealed co‐translational interactions during formation of multiple major complexes, and together with recent (...)
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  39.  95
    An interpretive review of the origin of life research.David Penny - 2005 - Biology and Philosophy 20 (4):633-671.
    Life appears to be a natural property of matter, but the problem of its origin only arose after early scientists refuted continuous spontaneous generation. There is no chance of life arising ‘all at once’, we need the standard scientific incremental explanation with large numbers of small steps, an approach used in both physical and evolutionary sciences. The necessity for considering both theoretical and experimental approaches is emphasized. After describing basic principles that are available (including the Darwin-Eigen cycle), the search for (...)
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  40.  27
    New Roles for the Nucleolus in Health and Disease.Lorena Núñez Villacís, Mei S. Wong, Laura L. Ferguson, Nadine Hein, Amee J. George & Katherine M. Hannan - 2018 - Bioessays 40 (5):1700233.
    Over the last decade, our appreciation of the importance of the nucleolus for cellular function has progressed from the ordinary to the extraordinary. We no longer think of the nucleolus as simply the site of ribosome production, or a dynamic subnuclear body noted by pathologists for its changes in size and shape with malignancy. Instead, the nucleolus has emerged as a key controller of many cellular processes that are fundamental to normal cell homeostasis and the target for dysregulation in many (...)
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  41.  14
    MOTS‐c: A Mitochondrial‐Encoded Regulator of the Nucleus.Bérénice A. Benayoun & Changhan Lee - 2019 - Bioessays 41 (9):1900046.
    Mitochondria are increasingly being recognized as information hubs that sense cellular changes and transmit messages to other cellular components, such as the nucleus, the endoplasmic reticulum (ER), the Golgi apparatus, and lysosomes. Nonetheless, the interaction between mitochondria and the nucleus is of special interest because they both host part of the cellular genome. Thus, the communication between genome‐bearing organelles would likely include gene expression regulation. Multiple nuclear‐encoded proteins have been known to regulate mitochondrial gene expression. On the contrary, no mitochondrial‐encoded (...)
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  42.  10
    Co‐translational folding of nascent polypeptides: Multi‐layered mechanisms for the efficient biogenesis of functional proteins.Kevin Maciuba, Nandakumar Rajasekaran, Xiuqi Chen & Christian M. Kaiser - 2021 - Bioessays 43 (7):2100042.
    The coupling of protein synthesis and folding is a crucial yet poorly understood aspect of cellular protein folding. Over the past few years, it has become possible to experimentally follow and define protein folding on the ribosome, revealing principles that shape co‐translational folding and distinguish it from refolding in solution. Here, we highlight some of these recent findings from biochemical and biophysical studies and their potential significance for cellular protein biogenesis. In particular, we focus on nascent chain interactions with the (...)
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  43.  16
    Cellular self‐organization: An overdrive in Cambrian diversity?Filip Vujovic, Neil Hunter & Ramin M. Farahani - 2022 - Bioessays 44 (10):2200033.
    During the early Cambrian period metazoan life forms diverged at an accelerated rate to occupy multiple ecological niches on earth. A variety of explanations have been proposed to address this major evolutionary phenomenon termed the “Cambrian explosion.” While most hypotheses address environmental, developmental, and ecological factors that facilitated evolutionary innovations, the biological basis for accelerated emergence of species diversity in the Cambrian period remains largely conjectural. Herein, we posit that morphogenesis by self‐organization enables the uncoupling of genomic mutational landscape from (...)
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  44.  18
    A positive role for yeast extrachromosomal rDNA circles?Anthony M. Poole, Takehiko Kobayashi & Austen Rd Ganley - 2012 - Bioessays 34 (9):725-729.
    Graphical AbstractYeast mitochondria frequently mutate, and some dysfunctional mitochondria out-compete wild-type versions. The retrograde response enables yeast to tolerate dysfunction, but also produces ribosomal DNA circles (ERCs). We propose that ERC accumulation increases expression of the rDNA antisense gene, TAR1, which counteracts spread of respiration-deficient mitochondria in matings with wild-type yeast.
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  45.  7
    Cell‐type‐specific regulation of RNA polymerase I transcription: a new frontier.Hung Tseng - 2006 - Bioessays 28 (7):719-725.
    Ribosomal RNA transcription was one of the first model systems for molecular characterization of a transcription regulatory mechanism and certainly one of the best studied in the widest range of organisms. In multicellular organisms, however, the issue of cell‐type‐specific regulation of rRNA transcription has not been well addressed. Here I propose that a systematic study of cell‐type‐specific regulation of rRNA transcription may reveal new regulatory mechanisms that have not been previously realized. Specifically, issues concerning the cell‐type‐specific requirement for rRNA production, (...)
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  46.  41
    The Egg as a Semiotic Gateway to Reproduction.Franco Giorgi, Luis Emilio Bruni & Louis J. Goldberg - 2013 - Biosemiotics 6 (3):489-496.
    The egg behaves as a prospective cell sustaining the developmental processes of the future embryo. In biosemiotic terms, this apparent teleonomic behaviour can be accounted for without referring to the exclusive causal role played by its genetic makeup. We envision two different processes that are uniquely found in the oocyte: (1) the first involves the mechanisms by which large amounts of mRNA accumulate in the ooplasm to establish the embryo axes prior to fertilization; (2) the second involves transfer of an (...)
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  47.  11
    BioEssays 3/2020.Lei-Yun Wang, Jia-Jia Cui, Cheng-Xian Guo & Ji-Ye Yin - 2020 - Bioessays 42 (3):2070031.
    Graphical AbstractCellular internal ribosomal entry site (IRES) is important for cap-independent translational initiation during stress and pathology. In article number 1900180, Lei-Yun Wang et al. propose an idea to discover IRES based on the latest high-throughput technologies, hence facilitating the understanding of IRES in disease development and treatment.
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  48.  8
    Processing and termination of RNA polymerase I transcripts.Ronald H. Reeder, Paul Labhart & Brian McStay - 1987 - Bioessays 6 (3):108-112.
    Electron micrographs of active ribosomal genes from many species show a similar picture in which gene regions covered with nascent transcripts alternate with apparently non‐transcribed spacers. Since the gradients of visible nascent transcripts stop near the 3′ end of the 28S sequence it has often been assumed that transcription by RNA polymerase I also terminates at that point. Recent biochemical studies have shown however, that transcription continues far beyond the 3′ end of the 28S and in some species continues across (...)
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  49.  16
    The Logic of Essentialism: An Interpretation of Aristotle’s Modal Syllogistic.Paul Thom - 1996 - Dordrecht, Boston, and London: Kluwer Academic Publishers.
    Aristotle's modal syllogistic has been an object of study ever since the time of Theophrastus; but these studies have been somewhat desultory. Remarkably, in the 1990s several new lines of research have appeared, with series of original publications by Fred Johnson, Richard Patterson and Ulrich Nortmann. Johnson presented for the first time a formal semantics adequate to a de re reading of the apodeictic syllogistic; this was based on a simple intuition linking the modal syllogistic to Aristotelian metaphysics. Nortmann developed (...)
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  50. Resemblance Nominalism: A Solution to the Problem of Universals.Gonzalo Rodríguez Pereyra - 2002 - New York: Oxford University Press.
    Gardeners, poets, lovers, and philosophers are all interested in the redness of roses; but only philosophers wonder how it is that two different roses can share the same property. Are red things red because they resemble each other? Or do they resemble each other because they are red? Since the 1970s philosophers have tended to favour the latter view, and held that a satisfactory account of properties must involve the postulation of either universals or tropes. But Gonzalo Rodriguez-Pereyra revives the (...)
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