Results for 'Hsp90'

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  1. Hsp90-induced evolution: Adaptationist, neutralist, and developmentalist scenarios.Roberta L. Millstein - 2007 - Biological Theory: Integrating Development, Evolution and Cognition 2 (4):376-386.
    Recent work on the heat-shock protein Hsp90 by Rutherford and Lindquist (1998) has been included among the pieces of evidence taken to show the essential role of developmental processes in evolution; Hsp90 acts as a buffer against phenotypic variation, allowing genotypic variation to build. When the buffering capacity of Hsp90 is altered (e.g., in nature, by mutation or environmental stress), the genetic variation is "revealed," manifesting itself as phenotypic variation. This phenomenon raises questions about the genetic variation (...)
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    Under cover: causes, effects and implications of Hsp90‐mediated genetic capacitance.Todd A. Sangster, Susan Lindquist & Christine Queitsch - 2004 - Bioessays 26 (4):348-362.
    The environmentally responsive molecular chaperone Hsp90 assists the maturation of many key regulatory proteins. An unexpected consequence of this essential biochemical function is that genetic variation can accumulate in genomes and can remain phenotypically silent until Hsp90 function is challenged. Notably, this variation can be revealed by modest environmental change, establishing an environmentally responsive exposure mechanism. The existence of diverse cryptic polymorphisms with a plausible exposure mechanism in evolutionarily distant lineages has implications for the pace and nature of (...)
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    Hop: more than an Hsp70/Hsp90 adaptor protein.O. O. Odunuga, V. M. Longshaw & G. L. Blatch - 2004 - Bioessays 26 (10):1058-1068.
    Molecular chaperones facilitate the correct folding of other proteins under physiological and stress conditions. Recently it has become evident that various co‐chaperone proteins regulate the cellular functions of these chaperones, particularly Hsp70 and Hsp90. Hop is one of the most extensively studied co‐chaperones that is able to directly associate with both Hsp70 and Hsp90. The current dogma proposes that Hop functions primarily as an adaptor that directs Hsp90 to Hsp70‐client protein complexes in the cytoplasm. However, recent evidence (...)
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    Control of steroid receptor function and cytoplasmic‐nuclear transport by heat shock proteins.William B. Pratt - 1992 - Bioessays 14 (12):841-848.
    As targeted proteins that move within the cell, the steroid receptors have become very useful probes for understanding the linked phenomena of protein folding and transport. From the study of steroid receptor‐associated proteins it has become clear over the past two years that these receptors are bound to a multiprotein complex containing at least two heat shock proteins, hsp90 and hsp56. Attachment of receptors to this complex in a cell‐free system appears to require the protein unfolding/folding activity of a (...)
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    Chaperone discovery.Shu Quan & James Ca Bardwell - 2012 - Bioessays 34 (11):973-981.
    Molecular chaperones assist de novo protein folding and facilitate the refolding of stress‐denatured proteins. The molecular chaperone concept was coined nearly 35 years ago, and since then, tremendous strides have been made in understanding how these factors support protein folding. Here, we focus on how various chaperone proteins were first identified to play roles in protein folding. Examples are used to illustrate traditional routes of chaperone discovery and point out their advantages and limitations. Recent advances, including the development of folding (...)
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