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β-发夹肽 Chignolin 在超快 pH 跳跃时的折叠动力学和体积变化。

Folding Kinetics and Volume Variation of the β-Hairpin Peptide Chignolin upon Ultrafast pH-Jumps.

机构信息

CQC-IMS, Department of Chemistry, University of Coimbra, 3004-535 Coimbra, Portugal.

出版信息

J Phys Chem B. 2024 May 23;128(20):4898-4910. doi: 10.1021/acs.jpcb.3c08271. Epub 2024 May 11.

Abstract

In-depth characterization of fundamental folding steps of small model peptides is crucial for a better understanding of the folding mechanisms of more complex biomacromolecules. We have previously reported on the folding/unfolding kinetics of a model α-helix. Here, we study folding transitions in chignolin (GYDPETGTWG), a short β-hairpin peptide previously used as a model to study conformational changes in β-sheet proteins. Although previously suggested, until now, the role of the Tyr2-Trp9 interaction in the folding mechanism of chignolin was not clear. In the present work, pH-dependent conformational changes of chignolin were characterized by circular dichroism (CD), nuclear magnetic resonance (NMR), ultrafast pH-jump coupled with time-resolved photoacoustic calorimetry (TR-PAC), and molecular dynamics (MD) simulations. Taken together, our results present a comprehensive view of chignolin's folding kinetics upon local pH changes and the role of the Tyr2-Trp9 interaction in the folding process. CD data show that chignolin's β-hairpin formation displays a pH-dependent skew bell-shaped curve, with a maximum close to pH 6, and a large decrease in β-sheet content at alkaline pH. The β-hairpin structure is mainly stabilized by aromatic interactions between Tyr2 and Trp9 and CH-π interactions between Tyr2 and Pro4. Unfolding of chignolin at high pH demonstrates that protonation of Tyr2 is essential for the stability of the β-hairpin. Refolding studies were triggered by laser-induced pH-jumps and detected by TR-PAC. The refolding of chignolin from high pH, mainly due to the protonation of Tyr2, is characterized by a volume expansion (10.4 mL mol), independent of peptide concentration, in the microsecond time range (lifetime of 1.15 μs). At high pH, the presence of the deprotonated hydroxyl (tyrosinate) hinders the formation of the aromatic interaction between Tyr2 and Trp9 resulting in a more disorganized and dynamic tridimensional structure of the peptide. This was also confirmed by comparing MD simulations of chignolin under conditions mimicking neutral and high pH.

摘要

深入研究小模型肽的基本折叠步骤对于更好地理解更复杂生物大分子的折叠机制至关重要。我们之前报道了模型α-螺旋的折叠/去折叠动力学。在这里,我们研究了 chignolin(GYDPETGTWG)的折叠转变,chignolin 是一种短的 β-发夹肽,以前曾被用作研究 β-折叠蛋白构象变化的模型。尽管之前已经提出,但直到现在,Tyr2-Trp9 相互作用在 chignolin 折叠机制中的作用仍不清楚。在本工作中,通过圆二色性(CD)、核磁共振(NMR)、超快 pH 跃变结合时间分辨光声量热法(TR-PAC)和分子动力学(MD)模拟研究了 chignolin 的 pH 依赖性构象变化。总之,我们的结果提供了 chignolin 在局部 pH 变化下折叠动力学的综合视图,以及 Tyr2-Trp9 相互作用在折叠过程中的作用。CD 数据表明,chignolin 的 β-发夹形成显示出 pH 依赖性的倾斜钟形曲线,最大接近 pH6,在碱性 pH 时β-折叠含量大幅下降。β-发夹结构主要由 Tyr2 和 Trp9 之间的芳香相互作用和 Tyr2 和 Pro4 之间的 CH-π 相互作用稳定。在高 pH 下,chignolin 的解折叠表明 Tyr2 的质子化对于 β-发夹的稳定性是必不可少的。通过激光诱导的 pH 跃变触发重折叠研究,并通过 TR-PAC 进行检测。chignolin 从高 pH 复性主要归因于 Tyr2 的质子化,在微秒时间范围内(寿命为 1.15 μs)表现为体积膨胀(10.4 mL mol),与肽浓度无关。在高 pH 下,去质子化的羟基(酪氨酸)的存在阻碍了 Tyr2 和 Trp9 之间的芳香相互作用的形成,导致肽的三维结构更加无序和动态。通过比较模拟中性和高 pH 条件下的 chignolin 的 MD 模拟,也证实了这一点。

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