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探究β-发夹解折叠热力学的关键非共价力。

Probing the non-covalent forces key to the thermodynamics of β-hairpin unfolding.

作者信息

Tran Thien H, Prusty Priyanka, Ricciardi Meghan, Travis Christopher R, Waters Marcey L, Gibb Bruce C

机构信息

Department of Chemistry, Tulane University School of Science and Engineering New Orleans LA 70118 USA

Department of Chemistry, University of North Carolina at Chapel Hill Chapel Hill NC 27599 USA.

出版信息

Chem Sci. 2024 Aug 26;15(38):15588-98. doi: 10.1039/d4sc03464c.

Abstract

Although it is well understood that the graph of the free energy of unfolding (Δ) of a globular protein with temperature approximates to a negative parabola, there is as yet no link between this global (G) Δ () function and the individual structural elements-residue type and the non-covalent forces between groups-contributing to it. As such, there is little understanding of how each structural element contributes to the globally assessed changes of enthalpy (Δ ), entropy (Δ ), and heat capacity (Δ ) of unfolding calculated from the Δ () function. To address this situation, we consider here an alternative approach to examining fold stability. Specifically, we examine the local (L) reporting of the thermodynamics of unfolding provided by each residue. By using H NMR spectroscopy to monitor the response of the individual mainchain amide N-H groups of β-hairpin peptides with temperature, we generate local Δ () functions, using these to calculate the local enthalpy (Δ ), entropy (Δ ), and heat capacity (Δ ) of unfolding. Mapping the thermodynamic changes in this way, for specific point-mutations, provides new information about how specific residues, non-covalent forces, and secondary structure type, contribute to folding. This type of information provides new details of the factors contributing to the typically measured global Δ () function.

摘要

尽管人们很清楚,球状蛋白质的解折叠自由能(Δ)随温度变化的曲线近似于一条负抛物线,但目前这种整体的(G)Δ()函数与构成它的各个结构元件——残基类型以及基团之间的非共价力——之间尚无联系。因此,对于每个结构元件如何对根据Δ()函数计算出的解折叠过程中整体评估的焓变(Δ)、熵变(Δ)和热容变(Δ)产生影响,人们了解甚少。为了解决这一问题,我们在此考虑一种研究折叠稳定性的替代方法。具体而言,我们研究每个残基提供的解折叠热力学的局部(L)报告。通过使用核磁共振氢谱(H NMR)来监测β - 发夹肽的各个主链酰胺N - H基团随温度的响应,我们生成局部Δ()函数,并用这些函数计算解折叠的局部焓变(Δ)、熵变(Δ)和热容变(Δ)。以这种方式绘制特定点突变的热力学变化,能提供有关特定残基、非共价力和二级结构类型如何对折叠产生影响的新信息。这类信息为构成通常测量的整体Δ()函数的因素提供了新的细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26be/11445830/233cbcf618a2/d4sc03464c-f1.jpg

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