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Roles of the nucleotide exchange factor and chaperone Hsp110 in cellular proteostasis and diseases of protein misfolding

期刊

BIOLOGICAL CHEMISTRY
卷 399, 期 10, 页码 1215-1221

出版社

WALTER DE GRUYTER GMBH
DOI: 10.1515/hsz-2018-0209

关键词

chaperone; folding; holdase; Hsp70; Hsp110; neurodegenerative disease; nucleotide exchange factor; proteopathy; proteostasis

资金

  1. NIH [GM074696, GM127287, AG051046]

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Cellular protein homeostasis (proteostasis) is maintained by a broad network of proteins involved in synthesis, folding, triage, repair and degradation. Chief among these are molecular chaperones and their cofactors that act as powerful protein remodelers. The growing realization that many human pathologies are fundamentally diseases of protein misfolding (proteopathies) has generated interest in understanding how the proteostasis network impacts onset and progression of these diseases. In this minireview, we highlight recent progress in understanding the enigmatic Hsp110 class of heat shock protein that acts as both a potent nucleotide exchange factor to regulate activity of the foldase Hsp70, and as a passive chaperone capable of recognizing and binding cellular substrates on its own, and its integration into the proteostasis network.

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