| Literature DB >> 32231288 |
Zhenying Liu1,2, Shengnan Zhang1,2, Jinge Gu1,2, Yilun Tong1,2, Yichen Li3, Xinrui Gui1,2, Houfang Long1,2, Chuchu Wang1,2, Chunyu Zhao1,2, Jinxia Lu3, Lin He3, Ying Li1,2, Zhijun Liu4, Dan Li5,6, Cong Liu7,8.
Abstract
Protein phase separation drives the assembly of membraneless organelles, but little is known about how these membraneless organelles are maintained in a metastable liquid- or gel-like phase rather than proceeding to solid aggregation. Here, we find that human small heat-shock protein 27 (Hsp27), a canonical chaperone that localizes to stress granules (SGs), prevents FUS from undergoing liquid-liquid phase separation (LLPS) via weak interactions with the FUS low complexity (LC) domain. Remarkably, stress-induced phosphorylation of Hsp27 alters its activity, leading Hsp27 to partition with FUS LC to preserve the liquid phase against amyloid fibril formation. NMR spectroscopy demonstrates that Hsp27 uses distinct structural mechanisms for both functions. Our work reveals a fine-tuned regulation of Hsp27 for chaperoning FUS into either a polydispersed state or a LLPS state and suggests an essential role for Hsp27 in stabilizing the dynamic phase of stress granules.Entities:
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Year: 2020 PMID: 32231288 DOI: 10.1038/s41594-020-0399-3
Source DB: PubMed Journal: Nat Struct Mol Biol ISSN: 1545-9985 Impact factor: 15.369