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抑制剂与底物协同抑制α-突触核蛋白的淀粉样纤维伸长。

Inhibitor and substrate cooperate to inhibit amyloid fibril elongation of α-synuclein.

作者信息

Agerschou Emil Dandanell, Borgmann Vera, Wördehoff Michael M, Hoyer Wolfgang

机构信息

Institut für Physikalische Biologie, Heinrich-Heine-Universität Düsseldorf 40225 Düsseldorf Germany

Institute of Biological Information Processing, Structural Biochemistry (IBI-7), JuStruct: Jülich Center for Structural Biology, Forschungszentrum Jülich 52425 Jülich Germany.

出版信息

Chem Sci. 2020 Sep 28;11(41):11331-11337. doi: 10.1039/d0sc04051g.

Abstract

In amyloid fibril elongation, soluble growth substrate binds to the fibril-end and converts into the fibril conformation. This process is targeted by inhibitors that block fibril-ends. Here, we investigated how the elongation of α-synuclein (αS) fibrils, which are associated with Parkinson's disease and other synucleinopathies, is inhibited by αS variants with a preformed hairpin in the critical N-terminal region comprising residues 36-57. The inhibitory efficiency is strongly dependent on the specific position of the hairpin. We find that the inhibitor and substrate concentration dependencies can be analyzed with models of competitive enzyme inhibition. Remarkably, the growth substrate, , wild-type αS, supports inhibition by stabilizing the elongation-incompetent blocked state. This observation allowed us to create inhibitor-substrate fusions that achieved inhibition at low nanomolar concentration. We conclude that inhibitor-substrate cooperativity can be exploited for the design of fibril growth inhibitors.

摘要

在淀粉样纤维伸长过程中,可溶性生长底物与纤维末端结合并转化为纤维构象。这一过程受到阻断纤维末端的抑制剂的靶向作用。在此,我们研究了与帕金森病和其他突触核蛋白病相关的α-突触核蛋白(αS)纤维的伸长是如何被在包含36 - 57位残基的关键N端区域具有预形成发夹结构的αS变体所抑制的。抑制效率强烈依赖于发夹的特定位置。我们发现抑制剂和底物浓度依赖性可以用竞争性酶抑制模型来分析。值得注意的是,生长底物,即野生型αS,通过稳定无伸长能力的阻断状态来支持抑制作用。这一观察结果使我们能够创建在低纳摩尔浓度下实现抑制作用的抑制剂 - 底物融合体。我们得出结论,抑制剂 - 底物协同作用可用于设计纤维生长抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/effb/8162328/3f8bfaca431d/d0sc04051g-f1.jpg

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