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从头设计的 11 kDa 多肽:淀粉样变性的无规卷曲蛋白质模型。

A de novo designed 11 kDa polypeptide: model for amyloidogenic intrinsically disordered proteins.

机构信息

Department of Chemistry, State University of New York, Albany, NY 12222, USA.

出版信息

Biopolymers. 2010 Jul;93(7):607-18. doi: 10.1002/bip.21412.

Abstract

A de novo polypeptide GH(6)(GA)(3)GY(GA)(3)GEGAH(6) (YE8) has a significant number of identical weakly interacting beta-strands with the turns and termini functionalized by charged amino acids to control polypeptide folding and aggregation. YE8 exists in a soluble, disordered form at neutral pH but is responsive to changes in pH and ionic strength. The evolution of YE8 secondary structure has been successfully quantified during all stages of polypeptide fibrillation by deep UV resonance Raman (DUVRR) spectroscopy combined with other morphological, structural, spectral, and tinctorial characterization. The YE8 folding kinetics at pH 3.5 are strongly dependent on polypeptide concentration with a lag phase that can be eliminated by seeding with a solution of folded fibrillar YE8. The lag phase of polypeptide folding is concentration dependent leading to the conclusion that beta-sheet folding of the 11-kDa amyloidogenic polypeptide is completely aggregation driven.

摘要

一种从头多肽 GH(6)(GA)(3)GY(GA)(3)GEGAH(6) (YE8) 具有大量相同的弱相互作用的β-折叠,其中的转角和末端被带电荷的氨基酸官能化,以控制多肽的折叠和聚集。YE8 在中性 pH 值下以可溶性、无定形的形式存在,但对 pH 值和离子强度的变化有响应。通过与其他形态、结构、光谱和染色特性相结合的深紫外共振拉曼 (DUVRR) 光谱学,成功地量化了 YE8 二级结构在多肽原纤维形成的所有阶段的演化。在 pH 3.5 时,YE8 的折叠动力学强烈依赖于多肽浓度,在该浓度下存在滞后期,通过用折叠的纤维状 YE8 溶液接种可以消除该滞后期。多肽折叠的滞后期是浓度依赖性的,这导致了以下结论:11kDa 淀粉样多肽的β-折叠完全由聚集驱动。

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