Results for 'protein secretion'

1000+ found
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  1.  8
    Secreted Frizzled‐related proteins: searching for relationships and patterns.Steve E. Jones & Catherine Jomary - 2002 - Bioessays 24 (9):811-820.
    Secreted Frizzled‐related proteins (SFRPs) are modulators of the intermeshing pathways in which signals are transduced by Wnt ligands through Frizzled (Fz) membrane receptors. The Wnt networks influence biological processes ranging from developmental cell fate, cell polarity and adhesion to tumorigenesis and apoptosis. In the five or six years since their discovery, the SFRPs have emerged as dynamically expressed proteins able to bind both Wnts and Fz, with distinctive structural properties in which cysteine‐rich domains from Fz‐ and from netrin‐like proteins are (...)
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  2.  9
    The secretion pathway of IgA protease‐type proteins in gram‐negative bacteria.Thomas Klauser, Johannes Pohlner & Thomas F. Meyer - 1993 - Bioessays 15 (12):799-805.
    The pathogenic, Gram‐negative bacteria, Neisseria gon‐orrhoeae, Neisseria meningitidis and Haemophilus influenzae, secrete immunoglobulin A1 proteases into their extracellular surroundings. An extraordinary feature in the secretory pathway of these putative virulence factors is a self‐directed outer membrane transport step allowing the proteins to be secreted autonomously, even from foreign Gram‐negative host cells like Escherichia coli. Here we summarize recent achievements in the understanding of IgA protease outer membrane translocation.
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  3.  30
    What regulates secretion of non‐stored proteins by eukaryotic cells?Ann Marie Gebhart & Raymond W. Ruddon - 1986 - Bioessays 4 (5):213-218.
    Protein secretion is conventionally viewed as taking place by either of two cellular routes, a regulated pathway, involving external stimuli and secretory granules, and a presumptive ‘constitutive’ pathway, which does not involve hormonal or neuronal stimuli or the production of secretory granules. The evidence reviewed here strongly suggests that there are post‐synthesis rate‐limiting steps for many proteins released by the ‘constitutive’ pathway and, hence, that regulation in some sense is involved here too. The nature of these rate‐limiting determinants (...)
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  4.  32
    TssA: The cap protein of the Type VI secretion system tail.Abdelrahim Zoued, Eric Durand, Yoann G. Santin, Laure Journet, Alain Roussel, Christian Cambillau & Eric Cascales - 2017 - Bioessays 39 (10):1600262.
    The Type VI secretion system is a multiprotein and mosaic apparatus that delivers protein effectors into prokaryotic or eukaryotic cells. Recent data on the enteroaggregative Escherichia coli T6SS have provided evidence that the TssA protein is a key component during T6SS biogenesis. The T6SS comprises a trans-envelope complex that docks the baseplate, a cytoplasmic complex that represents the assembly platform for the tail. The T6SS tail is structurally, evolutionarily and functionally similar to the contractile tails of bacteriophages. (...)
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  5.  8
    Distinct TssA proteins converge in coordinating tail biogenesis of the type VI secretion systems.Jemal Ali & Erh-Min Lai - 2023 - Bioessays 45 (2):2200219.
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  6.  14
    Lean forward: Genetic analysis of temperature‐sensitive mutants unfolds the secrets of oligomeric protein complex assembly.Michael McMurray - 2014 - Bioessays 36 (9):836-846.
    Multisubunit protein complexes are essential for cellular function. Genetic analysis of essential processes requires special tools, among which temperature‐sensitive (Ts) mutants have historically been crucial. Many researchers assume that the effect of temperature on such mutants is to drive their proteolytic destruction. In fact, degradation‐mediated elimination of mutant proteins likely explains only a fraction of the phenotypes associated with Ts mutants. Here I discuss insights gained from analysis of Ts mutants in oligomeric proteins, with particular focus on the study (...)
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  7.  13
    The sorting enigma. Protein transport and secretion, edited by Mary‐Jane Gething. Cold Spring Harbor Laboratory. pp. 215. $30 (in U.S.); $36 (outside U.S.). [REVIEW]Jun-Lin Guan - 1986 - Bioessays 5 (4):188-188.
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  8.  13
    The sorting enigma. Protein transport and secretion, edited by Mary‐Jane Gething. Cold Spring Harbor Laboratory. pp. 215. $30 (in U.S.); $36 (outside U.S.). [REVIEW]Jun-Lin Guan - 1986 - Bioessays 5 (4):188-188.
  9.  12
    Protein translocation across mitochondrial membranes.Ulla Wienhues & Walter Neupert - 1992 - Bioessays 14 (1):17-23.
    Protein translocation across biological membranes is of fundamental importance for the biogenesis of organelles and in protein secretion. We will give an overview of the recent achievements in the understanding of protein translocation across mitochondrial membranes(1‐5). In particular we will focus on recently identified components of the mitochondrial import apparatus.
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  10.  17
    Small proteins, big roles: The signaling protein Apela extends the complexity of developmental pathways in the early zebrafish embryo.Michal Reichman-Fried & Erez Raz - 2014 - Bioessays 36 (8):741-745.
    The identification of molecules controlling embryonic patterning and their functional analysis has revolutionized the fields of Developmental and Cell Biology. The use of new sequence information and modern bioinformatics tools has enriched the list of proteins that could potentially play a role in regulating cell behavior and function during early development. The recent application of efficient methods for gene knockout in zebrafish has accelerated the functional analysis of many proteins, some of which have been overlooked due to their small size. (...)
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  11.  23
    A Ca2+‐binding protein with numerous roles and uses: parvalbumin in molecular biology and physiology.Syed Hasan Arif - 2009 - Bioessays 31 (4):410-421.
    Parvalbumins (PVs) are acidic, intracellular Ca2+‐binding proteins of low molecular weight. They are associated with several Ca2+‐mediated cellular activities and physiological processes. It has been suggested that PV might function as a “Ca2+ shuttle” transporting Ca2+ from troponin‐C (TnC) to the sarcoplasmic reticulum (SR) Ca2+ pump during muscle relaxation. Thus, PV may contribute to the performance of rapid, phasic movements by accelerating the contraction–relaxation cycle of fast‐twitch muscle fibers. Interestingly, PVs promote the generation of power stroke in fish by speeding (...)
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  12.  14
    Protein glycosylation in development and disease.James W. Dennis, Maria Granovsky & Charles E. Warren - 1999 - Bioessays 21 (5):412-421.
    N- and O-linked glycan structures of cell surface and secreted glycoproteins serve a variety of functions related to cell–cell communication in systems affecting development and disease. The more sophisticated N-glycan biosynthesis pathway of metazoans diverges from that of yeast with the appearance of the medial-Golgi β-N-acetylglucosaminyltransferases (GlcNAc-Ts). Tissue-specific regulation of medial- and trans-Golgi glycosyltransferases contribute structural diversity to glycoproteins in metazoans, and this can affect their molecular properties including localization, half-life, and biological activity. Null mutations in glycosyltransferase genes positioned later (...)
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  13.  17
    The DING family of proteins: ubiquitous in eukaryotes, but where are the genes?Anne Berna, Ken Scott, Eric Chabrière & François Bernier - 2009 - Bioessays 31 (5):570-580.
    PstS and DING proteins are members of a superfamily of secreted, high‐affinity phosphate‐binding proteins. Whereas microbial PstS have a well‐defined role in phosphate ABC transporters, the physiological function of DING proteins, named after their DINGGG N termini, still needs to be determined. PstS and DING proteins co‐exist in some Pseudomonas strains, to which they confer a highly adhesive and virulent phenotype. More than 30 DING proteins have now been purified, mostly from eukaryotes. They are often associated with infections or with (...)
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  14.  10
    Kinases and G proteins join the Wnt receptor complex.Tom Quaiser, Roman Anton & Michael Kühl - 2006 - Bioessays 28 (4):339-343.
    Wnt proteins form a family of secreted signaling proteins that play a key role in various developmental events such as cell differentiation, cell migration, cell polarity and cell proliferation. It is currently thought that Wnt proteins activate at least three different signaling pathways by binding to seven transmembrane receptors of the Frizzled family and the co-receptor LRP6. Despite our growing knowledge of intracellular components that mediate a Wnt signal, the molecular events at the membrane have remained rather unclear. Now several (...)
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  15.  9
    The sorting platform in the type III secretion pathway: From assembly to function.Jose Eduardo Soto & María Lara-Tejero - 2023 - Bioessays 45 (9):2300078.
    The type III secretion system (T3SS) is a specialized nanomachine that enables bacteria to secrete proteins in a specific order and directly deliver a specific set of them, collectively known as effectors, into eukaryotic organisms. The core structure of the T3SS is a syringe‐like apparatus composed of multiple building blocks, including both membrane‐associated and soluble proteins. The cytosolic components organize together in a chamber‐like structure known as the sorting platform (SP), responsible for recruiting, sorting, and initiating the substrates destined (...)
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  16.  17
    Insider trading: Extracellular matrix proteins and their non‐canonical intracellular roles.Andrew L. Hellewell & Josephine C. Adams - 2016 - Bioessays 38 (1):77-88.
    In metazoans, the extracellular matrix (ECM) provides a dynamic, heterogeneous microenvironment that has important supportive and instructive roles. Although the primary site of action of ECM proteins is extracellular, evidence is emerging for non‐canonical intracellular roles. Examples include osteopontin, thrombospondins, IGF‐binding protein 3 and biglycan, and relate to roles in transcription, cell‐stress responses, autophagy and cancer. These findings pose conceptual problems on how proteins signalled for secretion can be routed to the cytosol or nucleus, or can function in (...)
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  17.  17
    The secreted kinase ROP18 defends Toxoplasma's border.Sarah J. Fentress & L. David Sibley - 2011 - Bioessays 33 (9):693-700.
    Toxoplasma gondii is a highly successful parasite capable of infecting virtually all warm-blooded animals by actively invading nucleated host cells and forming a modified compartment where it replicates within the cytosol. The parasite-containing vacuole provides a safe haven, even in professional phagocytes such as macrophages, which normally destroy foreign microbes. In an effort to eliminate the parasite, the host up-regulates a family of immunity-related p47 GTPases (IRGs), which are recruited to the parasite-containing vacuole, resulting in membrane rupture and digestion of (...)
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  18.  7
    A Pseudomonas aeruginosa‐secreted protease modulates host intrinsic immune responses, but how?Zhenyu Cheng - 2016 - Bioessays 38 (11):1084-1092.
    Recently, we found that the Pseudomonas aeruginosa type II secreted protease IV functions as a unique Arabidopsis innate immunity elicitor. The protease IV‐activated pathway involves G protein signaling and raises the question of how protease elicitation leads to the activation of G protein‐mediated signaling, because plants do not appear to have metazoan‐like G protein‐coupled receptors. Importantly, our data suggest that Arabidopsis has evolved a mechanism to detect the proteolytic activity of a pathogen‐encoded protease, supporting the host‐pathogen arms (...)
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  19.  2
    Cochlear tonotopy from proteins to perception.Robert Fettiplace - 2023 - Bioessays 45 (8):2300058.
    A ubiquitous feature of the auditory organ in amniotes is the longitudinal mapping of neuronal characteristic frequencies (CFs), which increase exponentially with distance along the organ. The exponential tonotopic map reflects variation in hair cell properties according to cochlear location and is thought to stem from concentration gradients in diffusible morphogenic proteins during embryonic development. While in all amniotes the spatial gradient is initiated by sonic hedgehog (SHH), released from the notochord and floorplate, subsequent molecular pathways are not fully understood. (...)
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  20.  15
    The rapidly expanding CREC protein family: members, localization, function, and role in disease.Bent Honoré - 2009 - Bioessays 31 (3):262-277.
    Although many aspects of the physiological and pathophysiological mechanisms remain unknown, recent advances in our knowledge suggest that the CREC proteins are promising disease biomarkers or targets for therapeutic intervention in a variety of diseases. The CREC family of low affinity, Ca2+‐binding, multiple EF‐hand proteins are encoded by five genes,RCN1,RCN2,RCN3,SDF4, andCALU, resulting in reticulocalbin, ER Ca2+‐binding protein of 55 kDa (ERC‐55), reticulocalbin‐3, Ca2+‐binding protein of 45 kDa (Cab45), and calumenin. Alternative splicing increases the number of gene products. The (...)
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  21.  19
    Dual roles for autophagy: Degradation and secretion of Alzheimer's disease Aβ peptide.Per Nilsson & Takaomi C. Saido - 2014 - Bioessays 36 (6):570-578.
    Alzheimer's disease (AD) is a neurodegenerative disease exhibiting amyloid beta (Aβ) peptide accumulation as a key characteristic. Autophagy, which is dysregulated in AD, participates in the metabolism of Aβ. Unexpectedly, we recently found that autophagy, in addition to its degradative function, also mediates the secretion of Aβ. This finding adds Aβ to an increasing number of biomolecules, the secretion of which is mediated by autophagy. We also showed that inhibition of Aβ secretion through genetic deletion of autophagy (...)
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  22.  3
    Sorting of proteins to the vacuoles of plant cells.Alessandro Vitale & Maarten J. Chrispeels - 1992 - Bioessays 14 (3):151-160.
    The secretory system of plant cells sorts a large number of soluble proteins that either are secreted or accumulate in vacuoles. Secretion is a bulk‐flow process that requires no information beyond the presence of a signal peptide necessary to enter the endoplasmic reticulum. Many vacuolar proteins are glycoproteins and the glycans are often modified as the proteins pass through the Golgi complex. Vacuolar targeting information is not contained in glycans as it is in animal cells; rather, targeting information is (...)
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  23.  8
    Antigenic variation in trypansosomes: Secrets surface slowly.George A. M. Cross - 1996 - Bioessays 18 (4):283-291.
    Among pathogenic micro‐organisms that evade the mammalian immune responses, Trypanosoma brucei has developed the most elaborate capacity for antigenic variation. Trypanosomes branched early during eukaryotic evolution. They are characterized by many aberrations, ranging from the unusual compartmentation of metabolic pathways to the heresy of RNA editing. The ubiquitous phenomenon of glycosylphosphatidylinositol‐anchoring of eukaryotic plasma membrane proteins and RNA trans‐splicing (trypanosome genes contain no introns), which adds an identical leader sequence to all trypanosome mRNAs, were first defined during studies of antigenic (...)
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  24. SNAP23 is selectively expressed in airway secretory cells and mediates baseline and stimulated mucin secretion.Binhui Ren, Zoulikha Azzegagh, Ana M. Jaramillo, Yunxiang Zhu, Ana Pardo-Saganta, Rustam Bagirzadeh, Jose R. Flores, Wei Han, Yong-jun Tang, Jing Tu, Denise M. Alanis, Christopher M. Evans, Michele Guindani, Paul A. Roche, Jayaraj Rajagopal, Jichao Chen, C. William Davis, Michael J. Tuvim & Burton F. Dickey - unknown
    Airway mucin secretion is important pathophysiologically and as a model of polarized epithelial regulated exocytosis. We find the trafficking protein, SNAP23, selectively expressed in secretory cells compared with ciliated and basal cells of airway epithelium by immunohistochemistry and FACS, suggesting that SNAP23 functions in regulated but not constitutive epithelial secretion. Heterozygous SNAP23 deletant mutant mice show spontaneous accumulation of intracellular mucin, indicating a defect in baseline secretion. However mucins are released from perfused tracheas of mutant and (...)
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  25.  5
    Protection of germline immortality by the soma via a secreted endoribonuclease.Wenjing Qi, Fan Xu, Thomas Heimbucher & Ralf Baumeister - 2021 - Bioessays 43 (12):2100195.
    In sexually reproducing organisms maintenance of germ stem cell immortality is fundamental for transmitting genetic material to future generations. While previous research has mainly considered intrinsic regulatory mechanisms in the germline, our recent study has found a direct contribution of somatic cells in preserving germline immortality via the somatically expressed endoribonuclease ENDU‐2 in Caenorhabditis elegans. We have identified ENDU‐2 as a secreted protein that can be taken up by the germline. Here, we discuss how ENDU‐2 might uncouple its RNA‐binding (...)
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  26.  17
    The Toxoplasma dense granule proteins GRA17 and GRA23 mediate the movement of small molecules between the host and the parasitophorous vacuole. [REVIEW]Daniel A. Gold, Aaron D. Kaplan, Agnieszka Lis, Glenna C. L. Bett, Emily E. Rosowski, Kimberly M. Cirelli, Alexandre Bougdour, Saima M. Sidik, Josh R. Beck, Sebastian Lourido, Pascal F. Egea, Peter J. Bradley, Mohamed-Ali Hakimi, Randall L. Rasmusson & Jeroen P. J. Saeij - unknown
    © 2015 Elsevier Inc.Toxoplasma gondii is a protozoan pathogen in the phylum Apicomplexa that resides within an intracellular parasitophorous vacuole that is selectively permeable to small molecules through unidentified mechanisms. We have identified GRA17 as a Toxoplasma-secreted protein that localizes to the parasitophorous vacuole membrane and mediates passive transport of small molecules across the PVM. GRA17 is related to the putative Plasmodium translocon protein EXP2 and conserved across PV-residing Apicomplexa. The PVs of GRA17-deficient parasites have aberrant morphology, reduced (...)
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  27.  21
    Constitutive cycling: A general mechanism to regulate cell surface proteins.Stephen J. Royle & Ruth D. Murrell-Lagnado - 2003 - Bioessays 25 (1):39-46.
    Cells can change their function by rapidly modulating the levels of certain proteins at the plasma membrane. This rapid modulation is achieved by using a specialised trafficking process called constitutive cycling. The constitutive cycling of a variety of transmembrane proteins such as receptors, channels and transporters has recently been directly demonstrated in a wide range of cell types. This regulation is thought to underlie important biological phenomena such as learning and memory, gastric acid secretion and water and blood glucose (...)
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  28.  4
    Gelsolin: Calcium‐ and polyphosphoinositide‐regulated actin‐ modulating protein.H. L. Yin - 1987 - Bioessays 7 (4):176-179.
    Receptor‐mediated stimulation induces massive actin polymerization and cyto‐skeletal reorganization. The activity of a potent actin‐modulating protein, gelsolin, is regulated both by Ca2+ and polyphos‐phoinositides, and it may have a pivotal role in restructuring the actin cytoskeleton in response to agonist stimulation. Structure‐function analysis of gelsolin has (1) indicated that its NH2‐terminal half is primarily responsible for modulating actin filament length and polymerization; and (2) elucidated mechanisms by which Ca2+ and phospholipids may regulate such functions. Gelsolin is functionally and structurally (...)
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  29.  10
    Drosophila chorion genes: Cracking the eggshell's secrets.Terry L. Orr-Weaver - 1991 - Bioessays 13 (3):97-105.
    The chorion genes of Drosophila are amplified in response to developmental signals in the follicle cells of the ovary prior to their transcription. Their expression is regulated both temporally and spatially within this tissue. They thus serve as models both for the regulation of DNA replication and of developmental transcription. The regulatory elements for DNA amplification have been delineated. Their analysis reveals that amplification is mediated by several regulatory regions and initiates at defined origins within the chorion cluster. Proteins involved (...)
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  30.  5
    The politics and pedagogy of mourning: on responsibility in eulogy.Timothy Secret - 2015 - New York: Bloomsbury Academic.
    A study of how Derrida's acts of eulogy articulate the Levinasian ethical demand with a psychoanalytic account of ghosts.
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  31. Section A. membranes.Protein Synthesis as A. Membrane-Oriented & Richard W. Hendler - 1968 - In Peter Koestenbaum (ed.), Proceedings. [San Jose? Calif.,: [San Jose? Calif.. pp. 37.
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  32.  9
    Documents oubliés sur Paul Paradis, lecteur royal en hébreu.François Secret - forthcoming - Bibliothèque d'Humanisme Et Renaissance.
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  33. La correspondance de Guillaume Postel.François Secret - 1961 - Bibliothèque d'Humanisme Et Renaissance 23:534-549.
  34. Le Catalogus Gloriae Mundi De Barthélemy De Chasseneuz Et La Dignitas Hominis.F. Secret - 1958 - Bibliothèque d'Humanisme Et Renaissance 20 (1):170-176.
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  35. L'Arrestation de Postel à Lyon.François Secret - 1961 - Bibliothèque D’Humanisme Et Renaissance 23:357-359.
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  36. Les Jésuites Et Le Kabbalisme Chrétien A La Renaissance.F. Secret - 1958 - Bibliothèque d'Humanisme Et Renaissance 20 (3):542-555.
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  37. La tradition du'De omni scibiii'á la Renaissance: i'oeuvre de Paul Scaliger.Frangois Secret - 1955 - Convivium: revista de filosofía 23:492-97.
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  38.  6
    Notes sur G. postel.François Secret - 1975 - Bibliothèque d'Humanisme Et Renaissance 37 (1):101-119.
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  39. Notes Sur Guillaume Postel.F. Secret - 1961 - Bibliothèque d'Humanisme Et Renaissance 23 (2):351-374.
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  40.  21
    Notes sur quelques alchimistes de la Renaissance.François Secret - 1971 - Bibliothèque d'Humanisme Et Renaissance 33 (3):625-640.
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  41. The improper apocalypse : vitalism with and against a psychoanalytic approach to the end of the world.Timothy Secret - 2023 - In Jakub Kowalewski (ed.), The Environmental Apocalypse: Interdisciplinary Reflections on the Climate Crisis.
     
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  42.  11
    Une lettre retrouvée de G. postel au grand prieur de France.F. Secret & Guille Postel - forthcoming - Bibliothèque d'Humanisme Et Renaissance.
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  43.  20
    Un Témoignage oublié de Giulio Camillo Delminio sur la renaissance en France.François Secret - 1972 - Bibliothèque d'Humanisme Et Renaissance 34 (2):275-278.
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  44. Un Voyageur Espagnol En France Au Temps De François I Er.F. Secret - 1970 - Bibliothèque d'Humanisme Et Renaissance 32 (3):627-634.
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  45.  21
    Bacterial Translocation Ratchets: Shared Physical Principles with Different Molecular Implementations.Christof Hepp & Berenike Maier - 2017 - Bioessays 39 (10):1700099.
    Secretion systems enable bacteria to import and secrete large macromolecules including DNA and proteins. While most components of these systems have been identified, the molecular mechanisms of macromolecular transport remain poorly understood. Recent findings suggest that various bacterial secretion systems make use of the translocation ratchet mechanism for transporting polymers across the cell envelope. Translocation ratchets are powered by chemical potential differences generated by concentration gradients of ions or molecules that are specific to the respective secretion systems. (...)
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  46. Kevin A. Aho. Heidegger's Neglect of the Body (Albany, NY: SUNY Press, 2009), xv+ 176 pp. $65.00 cloth. Kathleen Ahrens, ed. Politics, Gender and Conceptual Metaphors (Hampshire, UK: Palgrave Macmillan, 2009), xii+ 275 pp. Ł50. 00 cloth. George A. Akerlof and Robert J. Shiller. Animal Spirits: How Human Psychology Drives. [REVIEW]Christopher Andrew, Richard J. Aldrich, Wesley K. Wark Secret Intelligence & A. Reader - 2011 - The European Legacy 16 (2):295-297.
     
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  47.  9
    Is Drosophila Dpp/BMP morphogen spreading required for wing patterning and growth?Shinya Matsuda & Markus Affolter - 2023 - Bioessays 45 (9):2200218.
    Secreted signaling molecules act as morphogens to control patterning and growth in many developing tissues. Since locally produced morphogens spread to form a concentration gradient in the surrounding tissue, spreading is generally thought to be the key step in the non‐autonomous actions. Here, we review recent advances in tool development to investigate morphogen function using the role of decapentaplegic (Dpp)/bone morphogenetic protein (BMP)‐type ligand in the Drosophila wing disc as an example. By applying protein binder tools to distinguish (...)
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  48.  6
    Sorting of cargo in the tubular endosomal network.Jachen A. Solinger & Anne Spang - 2022 - Bioessays 44 (12):2200158.
    Intercellular communication is an essential process in all multicellular organisms. During this process, molecules secreted by one cell will bind to a receptor on the cognate cell leading to the subsequent uptake of the receptor‐ligand complex. Once inside, the cell then determines the fate of the receptor‐ligand complex and any other proteins that were endocytosed together. Approximately 80% of endocytosed material is recycled back to the plasma membrane either directly or indirectly via the Golgi apparatus and the remaining 20% is (...)
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  49.  24
    Structure‐guided insights on the role of NS1 in flavivirus infection.David L. Akey, W. Clay Brown, Joyce Jose, Richard J. Kuhn & Janet L. Smith - 2015 - Bioessays 37 (5):489-494.
    We highlight the various domains of the flavivirus virulence factor NS1 and speculate on potential implications of the NS1 3D structure in understanding its role in flavivirus pathogenesis. Flavivirus non‐structural protein 1 (NS1) is a virulence factor with dual functions in genome replication and immune evasion. Crystal structures of NS1, combined with reconstructions from electron microscopy (EM), provide insight into the architecture of dimeric NS1 on cell membranes and the assembly of a secreted hexameric NS1‐lipid complex found in patient (...)
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  50.  11
    Hedgehog: an unusual signal transducer.Maarten F. Bijlsma, C. Arnold Spek & Maikel P. Peppelenbosch - 2004 - Bioessays 26 (4):387-394.
    Hedgehog proteins are of pivotal importance for development and maintenance of tissue patterns in adult organisms. Despite the role of Hedgehogs in differentiation and tumorigenesis, signal transduction of Hedgehog remains a relatively uncharted area of signalling biochemistry. For proper Hedgehog distribution into tissues, two highly unusual covalent modifications are necessary, palmitoylation of a secreted protein and the attachment of a cholesterol group, making Hedgehog the only established sterolated protein in nature. Hedgehog exerts its function via two membrane‐bound receptors, (...)
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