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应用 Hsp104 治疗蛋白质错误折叠疾病。

Applying Hsp104 to protein-misfolding disorders.

机构信息

Department of Biochemistry and Biophysics, University of Pennsylvania School of Medicine, 805b Stellar-Chance Laboratories, 422 Curie Boulevard, Philadelphia, PA 19104, USA.

出版信息

Biochem Cell Biol. 2010 Feb;88(1):1-13. doi: 10.1139/o09-121.

Abstract

Hsp104, a hexameric AAA+ ATPase found in yeast, transduces energy from cycles of ATP binding and hydrolysis to resolve disordered protein aggregates and cross-beta amyloid conformers. These disaggregation activities are often co-ordinated by the Hsp70 chaperone system and confer considerable selective advantages. First, renaturation of aggregated conformers by Hsp104 is critical for yeast survival after various environmental stresses. Second, amyloid remodeling by Hsp104 enables yeast to exploit multifarious prions as a reservoir of beneficial and heritable phenotypic variation. Curiously, although highly conserved in plants, fungi and bacteria, Hsp104 orthologues are absent from metazoa. Indeed, metazoan proteostasis seems devoid of a system that couples protein disaggregation to renaturation. Here, we review recent endeavors to enhance metazoan proteostasis by applying Hsp104 to the specific protein-misfolding events that underpin two deadly neurodegenerative amyloidoses. Hsp104 potently inhibits Abeta42 amyloidogenesis, which is connected with Alzheimer's disease, but appears unable to disaggregate preformed Abeta42 fibers. By contrast, Hsp104 inhibits and reverses the formation of alpha-synuclein oligomers and fibers, which are connected to Parkinson's disease. Importantly, Hsp104 antagonizes the degeneration of dopaminergic neurons induced by alpha-synuclein misfolding in the rat substantia nigra. These studies raise hopes for developing Hsp104 as a therapeutic agent.

摘要

Hsp104 是一种六聚体 AAA+ ATP 酶,存在于酵母中,它将能量从 ATP 结合和水解的循环中传递,以解决无序的蛋白质聚集体和交叉-β淀粉样构象。这些解聚活性通常由 Hsp70 伴侣系统协调,并赋予相当大的选择性优势。首先,Hsp104 对聚集构象物的重折叠对于酵母在各种环境压力后存活至关重要。其次,Hsp104 对淀粉样蛋白的重塑使酵母能够利用多种朊病毒作为有益和可遗传表型变异的储存库。奇怪的是,尽管在植物、真菌和细菌中高度保守,但 Hsp104 的同源物不存在于后生动物中。事实上,后生动物的蛋白质稳态似乎缺乏将蛋白质解聚与重折叠偶联的系统。在这里,我们回顾了最近通过将 Hsp104 应用于构成两种致命神经退行性淀粉样变的特定蛋白质错误折叠事件来增强后生动物蛋白质稳态的努力。Hsp104 强烈抑制与阿尔茨海默病相关的 Abeta42 淀粉样蛋白形成,但似乎无法解聚预先形成的 Abeta42 纤维。相比之下,Hsp104 抑制并逆转了与帕金森病相关的α-突触核蛋白寡聚物和纤维的形成。重要的是,Hsp104 拮抗了由α-突触核蛋白错误折叠在大鼠黑质诱导的多巴胺能神经元变性。这些研究为开发 Hsp104 作为治疗剂带来了希望。

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