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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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Anti-influenza virus activity of benzo[d]thiazoles that target heat shock protein 90

TL;DR: A series of benzo[d]thiazole and 4,5,6,7-tetrahydrobenzo derivatives with robust and selective activities against influenza A, H1N1, H3N2 and influenza B viruses are reported on.
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HSC70 and HSP90 chaperones perform complementary roles in translocation of the cholera toxin A1 subunit from the endoplasmic reticulum to the cytosol

TL;DR: A novel translocation mechanism in which sequential interactions with HSP90 and HSC70 drive the N- to C-terminal extraction of CTA1 from the ER is suggested, which suggests a toxin-resistant phenotype.
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Molecular docking performance evaluated on the D3R Grand Challenge 2015 drug-like ligand datasets.

TL;DR: This work used a protocol involving a preliminary analysis of the available data in PDB and PubChem BioAssay, and then a docking/scoring step using more computationally demanding parameters that were required to provide more reliable predictions.
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Protein-protein interactions underlying the behavioral and psychological symptoms of dementia (BPSD) and Alzheimer's disease.

TL;DR: This study explored the molecular interactions between AD and BPSD using protein-protein interaction (PPI) networks built from OMIM (Online Mendelian Inheritance in Man) genes that were related to AD and two distinct B PSD domains, the Affective Domain and the Hyperactivity, Impulsivity, Disinhibition, and Aggression (HIDA) Domain.
References
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Journal ArticleDOI

Protein S-nitrosylation: purview and parameters.

TL;DR: S-nitrosylation conveys a large part of the ubiquitous influence of nitric oxide on cellular signal transduction, and provides a mechanism for redox-based physiological regulation.
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Steroid receptor interactions with heat shock protein and immunophilin chaperones.

TL;DR: A historical perspective on a body of steroid receptor research dealing with the structure and physiological significance of the untransformed 9S receptor is provided, and it is shown that hsp90 itself exists in a variety of native multiprotein heterocomplexes independent of steroid receptors and other 'substrate' proteins.
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HSP90 at the hub of protein homeostasis: emerging mechanistic insights

TL;DR: Comprehensive understanding of how HSP90 functions promises not only to provide new avenues for therapeutic intervention, but to shed light on fundamental biological questions.
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Regulation of signaling protein function and trafficking by the hsp90/hsp70-based chaperone machinery.

TL;DR: This purified system of five purified proteins should facilitate understanding of how eukaryotlc hsp70 and hsp90 work together as essential components of a process that alters the conformations of substrate proteins to states that respond in signal transduction.
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Inhibition of heat shock protein HSP90-pp60v-src heteroprotein complex formation by benzoquinone ansamycins: essential role for stress proteins in oncogenic transformation.

TL;DR: It is demonstrated that HSP participation in multimolecular complex formation is required for src-mediated transformation and can provide a target for drug modulation.
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