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α-螺旋表面活性剂相关多肽C展开的自由能垒估计

Free energy barrier estimation of unfolding the alpha-helical surfactant-associated polypeptide C.

作者信息

Zangi R, Kovacs H, van Gunsteren W F, Johansson J, Mark A E

机构信息

Groningen Biomolecular Sciences and Biotechnology Institute, Department of Biophysical Chemistry, University of Groningen, Groningen, The Netherlands.

出版信息

Proteins. 2001 Jun 1;43(4):395-402. doi: 10.1002/prot.1052.

Abstract

Molecular dynamics simulations were conducted to estimate the free energy barrier of unfolding surfactant-associated polypeptide C (SP-C) from an alpha-helical conformation. Experimental studies indicate that while the helical fold of SP-C is thermodynamically stable in phospholipid micelles, it is metastable in a mixed organic solvent of CHCl3/CH3OH/0.1 M HCl at 32:64:5 (v/v/v), in which it undergoes an irreversible transformation to an insoluble aggregate that contains beta-sheet. On the basis of experimental observations, the free energy barrier was estimated to be approximately 100 kJ/mole by applying Eyring's transition state theory to the experimental rate of unfolding [Protein Sci 1998;7:2533-2540]. These studies prompted us to carry out simulations to investigate the unwinding process of two helical turns encompassing residues 25-32 in water and in methanol. The results give an upper bound estimation for the free energy barrier of unfolding of SP-C of approximately 20 kJ/mole. The results suggest a need to reconsider the applicability of a single-mode activated process theory to protein unfolding.

摘要

进行了分子动力学模拟,以估计表面活性剂相关多肽C(SP-C)从α-螺旋构象展开的自由能垒。实验研究表明,虽然SP-C的螺旋折叠在磷脂微团中热力学稳定,但在CHCl3/CH3OH/0.1 M HCl(体积比为32:64:5)的混合有机溶剂中是亚稳态的,在该溶剂中它会不可逆地转变为含有β-折叠的不溶性聚集体。基于实验观察,通过将艾林过渡态理论应用于实验展开速率,估计自由能垒约为100 kJ/摩尔[《蛋白质科学》1998年;7:2533 - 2540]。这些研究促使我们进行模拟,以研究在水和甲醇中包含25 - 32位残基的两个螺旋圈的解旋过程。结果给出了SP-C展开自由能垒的上限估计值约为20 kJ/摩尔。结果表明有必要重新考虑单模活化过程理论对蛋白质展开的适用性。

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