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捕捉混合折叠多聚谷氨酰胺蛋白ataxin-3的构象集合。

Capturing the Conformational Ensemble of the Mixed Folded Polyglutamine Protein Ataxin-3.

作者信息

Sicorello Alessandro, Różycki Bartosz, Konarev Petr V, Svergun Dmitri I, Pastore Annalisa

机构信息

The Maurice Wohl Clinical Neuroscience Institute, King's College London, 5 Cutcombe Road, SE5 9RT London, UK; UK Dementia Research Institute at King's College London, SE5 9RT London, UK.

Institute of Physics, Polish Academy of Sciences, Al. Lotników 32/46, 04-668 Warsaw, Poland.

出版信息

Structure. 2021 Jan 7;29(1):70-81.e5. doi: 10.1016/j.str.2020.09.010. Epub 2020 Oct 15.

Abstract

Ataxin-3 is a deubiquitinase involved in protein quality control and other essential cellular functions. It preferentially interacts with polyubiquitin chains of four or more units attached to proteins delivered to the ubiquitin-proteasome system. Ataxin-3 is composed of an N-terminal Josephin domain and a flexible C terminus that contains two or three ubiquitin-interacting motifs (UIMs) and a polyglutamine tract, which, when expanded beyond a threshold, leads to protein aggregation and misfolding and causes spinocerebellar ataxia type 3. The high-resolution structure of the Josephin domain is available, but the structural and dynamical heterogeneity of ataxin-3 has so far hindered the structural description of the full-length protein. Here, we characterize non-expanded and expanded variants of ataxin-3 in terms of conformational ensembles adopted by the proteins in solution by jointly using experimental data from nuclear magnetic resonance and small-angle X-ray scattering with coarse-grained simulations. Our results pave the way to a molecular understanding of polyubiquitin recognition.

摘要

ataxin-3是一种去泛素化酶,参与蛋白质质量控制和其他重要的细胞功能。它优先与连接到泛素-蛋白酶体系统的蛋白质上的四个或更多单位的多聚泛素链相互作用。ataxin-3由一个N端的Josephin结构域和一个灵活的C端组成,C端包含两个或三个泛素相互作用基序(UIM)和一个聚谷氨酰胺序列,当该序列扩展超过阈值时,会导致蛋白质聚集和错误折叠,并引起3型脊髓小脑共济失调。Josephin结构域的高分辨率结构是已知的,但ataxin-3的结构和动力学异质性迄今为止阻碍了全长蛋白质的结构描述。在这里,我们通过联合使用来自核磁共振和小角X射线散射的实验数据以及粗粒度模拟,从溶液中蛋白质所采用的构象集合的角度,对ataxin-3的非扩展和扩展变体进行了表征。我们的结果为从分子层面理解多聚泛素识别铺平了道路。

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