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精氨酸-谷氨酸盐桥对螺旋稳定性的贡献。

Contribution of arginine-glutamate salt bridges to helix stability.

作者信息

Walker Kristin D, Causgrove Timothy P

机构信息

Department of Physical & Environmental Sciences, Texas A&M University-Corpus Christi, 78412-5802, USA.

出版信息

J Mol Model. 2009 Oct;15(10):1213-9. doi: 10.1007/s00894-009-0482-5. Epub 2009 Mar 5.

Abstract

Peptide side chain interactions were studied by molecular dynamics simulation using explicit solvent on a peptide with the sequence AAARAAAAEAAEAAAARA. Three different protonation states of the glutamic acid side chains were simulated for four 20 ns runs each, a total simulation time of 240 ns. Two different salt bridge geometries were observed and the preferred geometry was found to depend on Glu - Arg residue spacing. Stable charge clusters were also observed, particularly in the fully charged peptide. Salt bridges were selectively interrupted upon protonation, with concomitant changes in secondary structure. The fully charged peptide was highly helical between residues 9 and 13, although protonation increased helicity near the N-terminus. The contribution of salt bridges to helix stability therefore depends on both position and relative position of charged residues within a sequence.

摘要

使用显式溶剂通过分子动力学模拟研究了序列为AAARAAAAEAAEAAAARA的肽的肽侧链相互作用。对谷氨酸侧链的三种不同质子化状态分别进行了四次20 ns的模拟运行,总模拟时间为240 ns。观察到两种不同的盐桥几何结构,发现优选的几何结构取决于Glu-Arg残基间距。还观察到稳定的电荷簇,特别是在完全带电的肽中。质子化时盐桥被选择性中断,同时二级结构发生变化。完全带电的肽在残基9和13之间高度螺旋,尽管质子化增加了N端附近的螺旋度。因此,盐桥对螺旋稳定性的贡献取决于序列中带电残基的位置和相对位置。

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