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通过光谱学研究不同β-转角在β-发夹构象和稳定性中的作用。

Role of different β-turns in β-hairpin conformation and stability studied by optical spectroscopy.

机构信息

Department of Chemistry, University of Illinois at Chicago, Chicago, Illinois 60607-7061, USA.

出版信息

Proteins. 2012 Jan;80(1):44-60. doi: 10.1002/prot.23140. Epub 2011 Oct 12.

Abstract

Model β-hairpin peptides based on variations in the turn sequence of Cochran's tryptophan zipper peptide, SWTWENGKWTWK, were studied using electronic circular dichroism (ECD), fluorescence, and infrared (IR) spectroscopies. The trpzip2 Asn-Gly turn sequence was substituted with Thr-Gly, Aib-Gly, (D)Pro-Gly, and Gly-Asn (trpzip1) to study the impact of turn stability on β-hairpin formation. Stability and conformational changes of these hairpins were monitored by thermodynamic analyses of the temperature variation of both FTIR (amide I') and ECD spectral intensities. These changes were fit to a two-state model which yielded different T(m) values, representing the folding/unfolding process, for hairpins with different β-turns. Different β-turns show systematic contributions to hairpin structure formation, and their inclusion in hairpin design can modify the folding pathways. Aib-Gly or (D)Pro-Gly sequences stabilize the turn resulting in residual Trp-Trp interaction at high temperatures, but at the same time the β-structure (cross strand H-bonds) can become less stable due to constraints of the turn, as seen for (D)Pro-Gly. The structure of the Aib-Gly turn containing hairpin was determined by NMR and was shown to be like trpzip2 (Asn-Gly turn) as regards turn and strand geometries, but to differ from trpzip1 (Gly-Asn turn). The Munoz and Eaton statistical mechanically derived multistate model, tested as an alternate point of view, represented contributions from H-bonds and hydrophobic interactions as well as conformational change as interdependent. Use of different spectral methods that vary in dependence on these physical interactions along with the structural variations provided insight to the complex folding pathways of these small, well-folded peptides.

摘要

基于 Cochran 色氨酸拉链肽 SWTWENGKWTWK 转角序列变化的β-发夹肽模型,使用电子圆二色性 (ECD)、荧光和红外 (IR) 光谱进行了研究。将 trpzip2 Asn-Gly 转角序列替换为 Thr-Gly、Aib-Gly、(D)Pro-Gly 和 Gly-Asn(trpzip1),以研究转角稳定性对β-发夹形成的影响。通过 FTIR(酰胺 I')和 ECD 光谱强度随温度变化的热力学分析监测这些发夹的稳定性和构象变化。这些变化符合两态模型,该模型给出了不同的 Tm 值,代表了不同β-转角发夹的折叠/去折叠过程。不同的β-转角对发夹结构形成有系统的贡献,其包含在发夹设计中可以改变折叠途径。Aib-Gly 或(D)Pro-Gly 序列稳定转角,导致高温下残留的 Trp-Trp 相互作用,但同时β-结构(跨链 H 键)由于转角的限制可能变得不太稳定,如(D)Pro-Gly 所示。含 Aib-Gly 转角的发夹结构通过 NMR 确定,其转角和链几何形状与 trpzip2(Asn-Gly 转角)相似,但与 trpzip1(Gly-Asn 转角)不同。Munoz 和 Eaton 统计力学衍生的多态模型作为替代观点进行了测试,代表了氢键和疏水相互作用以及构象变化的贡献是相互依赖的。使用不同的光谱方法,这些方法在依赖于这些物理相互作用的同时,结合结构变化,提供了对这些小而折叠良好的肽复杂折叠途径的深入了解。

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