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首页> 外文期刊>Biochemistry >Clusterin is an ATP-independent chaperone with very broad substrate specificity that stabilizes stressed proteins in a folding-competent state.
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Clusterin is an ATP-independent chaperone with very broad substrate specificity that stabilizes stressed proteins in a folding-competent state.

机译:Clusterin是一种不依赖ATP的分子伴侣,具有非常广泛的底物特异性,可将受压蛋白质稳定在可折叠状态。

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摘要

We recently reported that the ubiquitous, secreted protein clusterin has chaperone activity in vitro [Humphreys et al. (1999) J. Biol. Chem. 274, 6875-6881]. In this study, we demonstrate that clusterin (i) inhibits stress-induced precipitation of a very broad range of structurally divergent protein substrates, (ii) binds irreversibly via an ATP-independent mechanism to stressed proteins to form solubilized high molecular weight complexes, (iii) lacks detectable ATPase activity, (iv) when acting alone, does not effect refolding of stressed proteins in vitro, and (v) stabilizes stressed proteins in a state competent for refolding by heat shock protein 70 (HSP70). Furthermore, we show that, at physiological levels, clusterin inhibits stress-induced precipitation of proteins in undiluted human serum. Clusterin represents the first identified secreted mammalian chaperone. However, reports from others suggest that, at least under stress conditions, clusterin may be retained within cells to exert a protective effect. Regardless of the topological site(s) of action, the demonstration that clusterin can stabilize stressed proteins in a refolding-competent state suggests that, during stresses, the action of clusterin may inhibit rapid and irreversible protein precipitation and produce a reservoir of inactive but stabilized molecules from which other refolding chaperones can subsequently salvage functional proteins.
机译:我们最近报道说,普遍存在的,分泌的蛋白簇蛋白在体外具有伴侣活性[Humphreys et al。 (1999)生物化学杂志。化学274,6875-6881]。在这项研究中,我们证明了簇蛋白(i)抑制应力诱导的非常广泛的结构差异蛋白底物的沉淀,(ii)通过与ATP无关的机制不可逆地结合于应力蛋白以形成可溶解的高分子量复合物,( iii)缺乏可检测的ATPase活性,(iv)单独发挥作用时,在体外不影响应激蛋白的重折叠,并且(v)使应激蛋白稳定在能够通过热激蛋白70(HSP70)复性的状态。此外,我们显示,在生理水平上,簇蛋白抑制未稀释的人血清中应激诱导的蛋白质沉淀。簇蛋白代表第一个被鉴定的分泌的哺乳动物伴侣。然而,其他人的报道表明,至少在应激条件下,簇蛋白可能会保留在细胞内以发挥保护作用。无论作用的拓扑部位如何,簇蛋白都可以将应激蛋白稳定在具有折叠能力的状态中,这一事实表明,在应激状态下,簇蛋白的作用可能会抑制蛋白质的快速和不可逆转沉淀,并产生失活但稳定的贮藏液其他可折叠的伴侣分子可随后从中拯救功能性蛋白的分子。

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