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α-突触核蛋白——一种典型淀粉样纤维的高分辨率冷冻电镜结构测定

High-Resolution Cryo-EM Structure Determination of α-synuclein - A Prototypical Amyloid Fibril.

作者信息

Sanchez Juan C, Pierson Josh, Borcik Collin G, Rienstra Chad M, Wright Elizabeth R

机构信息

Department of Biochemistry, University of Wisconsin-Madison, Madison, WI, USA 53706.

Biophysics Graduate Program, University of Wisconsin-Madison, Madison, WI, USA 53706.

出版信息

bioRxiv. 2024 Sep 19:2024.09.18.613698. doi: 10.1101/2024.09.18.613698.

Abstract

The physiological role of α-synuclein (α-syn), an intrinsically disordered presynaptic neuronal protein, is believed to impact the release of neurotransmitters through interactions with the SNARE complex. However, under certain cellular conditions that are not well understood, α-syn will self-assemble into β-sheet rich fibrils that accumulate and form insoluble neuronal inclusions. Studies of patient derived brain tissues have concluded that these inclusions are associated with Parkinson's disease, the second most common neurodegenerative disorder, and other synuclein related diseases called synucleinopathies. In addition, repetitions of and specific mutations to the SNCA gene, the gene that encodes α-syn, results in an increased disposition for synucleinopathies. The latest advances in cryo-EM structure determination and real-space helical reconstruction methods have resulted in over 60 structures of α-syn fibrils solved to date, with a handful of these reaching a resolution below 2.5 Å. Here, we provide a protocol for α-syn protein expression, purification, and fibrilization. We detail how sample quality is assessed by negative stain transmission electron microscopy (NS-TEM) analysis and followed by sample vitrification using the Vitrobot Mark IV vitrification robot. We provide a detailed step by step protocol for high resolution cryo-EM structure determination of α-syn fibrils using RELION and a series of specialized helical reconstruction tools that can be run within RELION. Finally, we detail how ChimeraX, Coot, and Phenix are used to build and refine a molecular model into the high resolution cryo-EM map. This workflow resulted in a 2.04 Å structure of α-syn fibrils with excellent resolution of residues 36 to 97 and an additional island of density for residues 15 to 22 that had not been previously reported. This workflow should serve as a starting point for individuals new to the neurodegeneration and structural biology fields. Together, this procedure lays the foundation for advanced structural studies of α-synuclein and other amyloid fibrils.

摘要

α-突触核蛋白(α-syn)是一种内在无序的突触前神经元蛋白,其生理作用被认为是通过与SNARE复合体相互作用来影响神经递质的释放。然而,在某些尚未完全了解的细胞条件下,α-syn会自组装成富含β-折叠的纤维,这些纤维会积累并形成不溶性神经元内含物。对患者来源的脑组织的研究得出结论,这些内含物与帕金森病(第二常见的神经退行性疾病)以及其他称为突触核蛋白病的与突触核蛋白相关的疾病有关。此外,编码α-syn的基因SNCA的重复和特定突变会导致患突触核蛋白病的倾向增加。冷冻电镜结构测定和实空间螺旋重建方法的最新进展已导致迄今解析出60多种α-syn纤维结构,其中少数结构的分辨率低于2.5 Å。在此,我们提供了α-syn蛋白表达、纯化和纤维化的方案。我们详细介绍了如何通过负染透射电子显微镜(NS-TEM)分析评估样品质量,然后使用Vitrobot Mark IV玻璃化机器人对样品进行玻璃化。我们提供了使用RELION和一系列可在RELION中运行的专门螺旋重建工具对α-syn纤维进行高分辨率冷冻电镜结构测定的详细分步方案。最后,我们详细介绍了如何使用ChimeraX、Coot和Phenix将分子模型构建并优化到高分辨率冷冻电镜图谱中。该工作流程得到了α-syn纤维的2.04 Å结构,其36至97位残基具有出色的分辨率,并且15至22位残基有一个先前未报道的额外密度岛。该工作流程应作为神经退行性疾病和结构生物学领域新手的起点。总之,该程序为α-突触核蛋白和其他淀粉样纤维的高级结构研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ed3/11429748/d1e96b7a0955/nihpp-2024.09.18.613698v1-f0002.jpg

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