| Literature DB >> 30718279 |
Xiang Zhang1,2, Shengnan Zhang1, Li Zhang3, Jinxia Lu4, Chunyu Zhao1,2, Feng Luo1,2, Dan Li4, Xueming Li5, Cong Liu6.
Abstract
Heat shock protein 104 (HSP104) is a conserved AAA+ protein disaggregase, can disassemble the toxic aggregates formed by different amyloid proteins, and is protective in various animal models associated with amyloid-related diseases. Extensive studies have attempted to elucidate how HSP104 disassembles the aggregated form of clients. Here, we found that HSP104 exhibits a potent holdase activity that does not require energy, prevents the soluble form of amyloid clients from aggregating, and differs from HSP104's disaggregase activity. Using cryo-EM, NMR, and additional biophysical approaches, we found that HSP104 utilizes its small subdomain of nucleotide-binding domain 2 (ssNBD2) to capture the soluble amyloid client (K19 of Tau) independent of its ATP hydrolysis activity. Our results indicate that HSP104 utilizes two fundamental distinct mechanisms to chaperone different forms of amyloid client and highlight the important yet previously unappreciated function of ssNBD2 in chaperoning amyloid client and thereby preventing pathological aggregation.Entities:
Keywords: HSP104; Tau protein (Tau); amyloid; chaperone; heat shock protein (HSP); holdase; protein aggregation; protein fibrils
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Year: 2019 PMID: 30718279 PMCID: PMC6442063 DOI: 10.1074/jbc.RA118.005980
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157