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结构背景调节α-突触核蛋白内在无序氨基末端的构象集合。

Structural Context Modulates the Conformational Ensemble of the Intrinsically Disordered Amino Terminus of α-Synuclein.

作者信息

Dumarieh Rania, Lagasca Dominique, Krishna Sakshi, Kragelj Jaka, Xiao Yiling, Ansari Shoyab, Frederick Kendra K

机构信息

Department of Biophysics, UT Southwestern Medical Center, Dallas, Texas 75390-8816, United States.

Center for Alzheimer's and Neurodegenerative Disease, UT Southwestern Medical Center, Dallas, Texas 75390, United States.

出版信息

J Am Chem Soc. 2025 Apr 9;147(14):11800-11810. doi: 10.1021/jacs.4c15653. Epub 2025 Mar 27.

Abstract

Regions of intrinsic disorder play crucial roles in biological systems, yet they often elude characterization by conventional biophysical techniques. To capture conformational distributions across different time scales, we employed a freezing approach coupled with solid-state NMR analysis. Using segmentally isotopically labeled α-synuclein (α-syn), we investigated the conformational ensembles of the six alanines, three glycines, and a single site (L8) in the disordered amino terminus under three distinct conditions: in 8 M urea, as a frozen monomer in buffer, and within the disordered regions flanking the amyloid core. The experimental spectra varied significantly among these conditions and deviated from those of a statistical coil. In 8 M urea, monomeric α-syn exhibited the most restricted conformational sampling, rarely accessing chemical shifts characteristic of α-helices or β-strands. In buffer, monomeric α-syn showed a broader conformational sampling, favoring α-helical conformations and, to a lesser extent, random coil states. Notably, amino acids in the disordered regions flanking the amyloid core demonstrated the most extensive conformational sampling, with broad peaks encompassing the entire range of possible chemical shifts and a marked increase in highly extended β-strand conformations. Collectively, this work demonstrates that intrinsically disordered regions exhibit distinct conformational ensembles, which are influenced not only by the chemical environment but also by the conformations of adjacent protein sequences. The differences in the conformational ensembles of the disordered amino terminus may explain why the monomer and the amyloid form of α-syn interact with different biomolecules inside cells.

摘要

内在无序区域在生物系统中发挥着关键作用,但它们常常难以通过传统生物物理技术进行表征。为了捕捉不同时间尺度上的构象分布,我们采用了一种冷冻方法并结合固态核磁共振分析。使用分段同位素标记的α-突触核蛋白(α-syn),我们在三种不同条件下研究了无序氨基末端的六个丙氨酸、三个甘氨酸和一个位点(L8)的构象集合:在8 M尿素中、作为缓冲液中的冷冻单体以及在淀粉样核心两侧的无序区域内。这些条件下的实验光谱差异显著,并且与统计卷曲的光谱不同。在8 M尿素中,单体α-syn表现出最受限的构象采样,很少出现α-螺旋或β-链的特征化学位移。在缓冲液中,单体α-syn显示出更广泛的构象采样,倾向于α-螺旋构象,在较小程度上也倾向于随机卷曲状态。值得注意的是,淀粉样核心两侧无序区域中的氨基酸表现出最广泛的构象采样,宽峰涵盖了所有可能的化学位移范围,并且高度延伸的β-链构象显著增加。总的来说,这项工作表明内在无序区域呈现出不同的构象集合,这不仅受到化学环境的影响,还受到相邻蛋白质序列构象的影响。无序氨基末端构象集合的差异可能解释了为什么α-syn的单体和淀粉样形式在细胞内与不同的生物分子相互作用。

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