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通过相关蛋白前体的共聚作用扩展淀粉样蛋白多形体的种类。

Expanding the repertoire of amyloid polymorphs by co-polymerization of related protein precursors.

机构信息

Astbury Centre for Structural Molecular Biology and School of Molecular and Cellular Biology, University of Leeds, Leeds LS2 9JT, United Kingdom.

出版信息

J Biol Chem. 2013 Mar 8;288(10):7327-37. doi: 10.1074/jbc.M112.447524. Epub 2013 Jan 17.

Abstract

Amyloid fibrils can be generated from proteins with diverse sequences and folds. Although amyloid fibrils assembled in vitro commonly involve a single protein precursor, fibrils formed in vivo can contain more than one protein sequence. How fibril structure and stability differ in fibrils composed of single proteins (homopolymeric fibrils) from those generated by co-polymerization of more than one protein sequence (heteropolymeric fibrils) is poorly understood. Here we compare the structure and stability of homo and heteropolymeric fibrils formed from human β2-microglobulin and its truncated variant ΔN6. We use an array of approaches (limited proteolysis, magic angle spinning NMR, Fourier transform infrared spectroscopy, and fluorescence) combined with measurements of thermodynamic stability to characterize the different fibril types. The results reveal fibrils with different structural properties, different side-chain packing, and strikingly different stabilities. These findings demonstrate how co-polymerization of related precursor sequences can expand the repertoire of structural and thermodynamic polymorphism in amyloid fibrils to an extent that is greater than that obtained by polymerization of a single precursor alone.

摘要

淀粉样纤维可以由具有不同序列和折叠的蛋白质产生。虽然体外组装的淀粉样纤维通常涉及单个蛋白质前体,但体内形成的纤维可以包含不止一种蛋白质序列。由单一蛋白质(同聚物纤维)组装而成的纤维与由多种蛋白质序列共聚(杂聚物纤维)形成的纤维的纤维结构和稳定性有何不同,目前了解甚少。在这里,我们比较了由人β2-微球蛋白及其截断变体 ΔN6 形成的同聚物和杂聚物纤维的结构和稳定性。我们使用一系列方法(有限蛋白水解、魔角旋转 NMR、傅里叶变换红外光谱和荧光)结合热力学稳定性测量来表征不同的纤维类型。结果表明,纤维具有不同的结构特性、不同的侧链堆积和显著不同的稳定性。这些发现表明,相关前体序列的共聚可以扩展淀粉样纤维的结构和热力学多态性的范围,超出了仅由单个前体聚合获得的范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f844/3591641/b6a9ff03834c/zbc0131342320001.jpg

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