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Structure, Function and Regulation of the Hsp90 Machinery

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TLDR
The recent progress made in understanding the Hsp90 machinery is discussed, which influences the conformational cycle, co-chaperone interaction, and inter-domain communications.
Abstract
Heat shock protein 90 (Hsp90) is an ATP-dependent molecular chaperone which is essential in eukaryotes It is required for the activation and stabilization of a wide variety of client proteins and many of them are involved in important cellular pathways Since Hsp90 affects numerous physiological processes such as signal transduction, intracellular transport, and protein degradation, it became an interesting target for cancer therapy Structurally, Hsp90 is a flexible dimeric protein composed of three different domains which adopt structurally distinct conformations ATP binding triggers directionality in these conformational changes and leads to a more compact state To achieve its function, Hsp90 works together with a large group of cofactors, termed co-chaperones Co-chaperones form defined binary or ternary complexes with Hsp90, which facilitate the maturation of client proteins In addition, posttranslational modifications of Hsp90, such as phosphorylation and acetylation, provide another level of regulation They influence the conformational cycle, co-chaperone interaction, and inter-domain communications In this review, we discuss the recent progress made in understanding the Hsp90 machinery

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The world of protein acetylation

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The Hsp70/Hsp90 Chaperone Machinery in Neurodegenerative Diseases.

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Affinity purification-mass spectrometry and network analysis to understand protein-protein interactions

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References
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Journal ArticleDOI

Unusual expression and localization of heat-shock proteins in human tumor cells.

TL;DR: It is reported that tumor cells, compared with normal cells, constitutively expressed 2‐ to 10‐fold higher levels of intracellular HSP90, which might imply a role of HSPs in eliciting an immune response against cancer.
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Structural Analysis of E. coli hsp90 Reveals Dramatic Nucleotide-Dependent Conformational Rearrangements

TL;DR: The effects of nucleotides on the structure of full-length HtpG, the Escherichia coli hsp90 ortholog, are described, suggesting a mechanism by which nucleotide could control client protein binding and release.
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Regulatory Role of SGT1 in Early R Gene-Mediated Plant Defenses

TL;DR: In this article, SGT1 is a component of Skp1-Cullin-F-box protein (SCF) ubiquitin ligases that target regulatory proteins for degradation.
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Chaperone-dependent E3 ubiquitin ligase CHIP mediates a degradative pathway for c-ErbB2/Neu

TL;DR: It is shown that the chaperone-binding ubiquitin ligase CHIP efficiently ubiquitinates and down-regulates ErbB2, and a previously unrecognized pathway, amenable to pharmacologic manipulation, that mediates Erb B2 stability is described.
Journal ArticleDOI

Antibiotic radicicol binds to the N-terminal domain of Hsp90 and shares important biologic activities with geldanamycin.

TL;DR: It is shown that radicicol, a macrocyclic antifungal structurally unrelated to geldanamycin, also specifically binds to Hsp90, and represents a structurally unique antibiotic, and the first non-benzoquinone ansamycin capable of binding to HSp90 and interfering with its function.
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