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葡萄球菌核酸酶序列YKGQP的环倾向:对核酸酶折叠的影响

Loop propensity of the sequence YKGQP from staphylococcal nuclease: implications for the folding of nuclease.

作者信息

Patel Sunita, Sasidhar Yellamraju U

机构信息

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400 076, India.

出版信息

J Pept Sci. 2007 Oct;13(10):679-92. doi: 10.1002/psc.907.

Abstract

Recently we performed molecular dynamics (MD) simulations on the folding of the hairpin peptide DTVKLMYKGQPMTFR from staphylococcal nuclease in explicit water. We found that the peptide folds into a hairpin conformation with native and nonnative hydrogen-bonding patterns. In all the folding events observed in the folding of the hairpin peptide, loop formation involving the region YKGQP was an important event. In order to trace the origins of the loop propensity of the sequence YKGQP, we performed MD simulations on the sequence starting from extended, polyproline II and native type I' turn conformations for a total simulation length of 300 ns, using the GROMOS96 force field under constant volume and temperature (NVT) conditions. The free-energy landscape of the peptide YKGQP shows minima corresponding to loop conformation with Tyr and Pro side-chain association, turn and extended conformational forms, with modest free-energy barriers separating the minima. To elucidate the role of Gly in facilitating loop formation, we also performed MD simulations of the mutated peptide YKAQP (Gly --> Ala mutation) under similar conditions starting from polyproline II conformation for 100 ns. Two minima corresponding to bend/turn and extended conformations were observed in the free-energy landscape for the peptide YKAQP. The free-energy barrier between the minima in the free-energy landscape of the peptide YKAQP was also modest. Loop conformation is largely sampled by the YKGQP peptide, while extended conformation is largely sampled by the YKAQP peptide. We also explain why the YKGQP sequence samples type II turn conformation in these simulations, whereas the sequence as part of the hairpin peptide DTVKLMYKGQPMTFR samples type I' turn conformation both in the X-ray crystal structure and in our earlier simulations on the folding of the hairpin peptide. We discuss the implications of our results to the folding of the staphylococcal nuclease.

摘要

最近,我们在明确的水环境中对来自葡萄球菌核酸酶的发夹肽DTVKLMYKGQPMTFR的折叠进行了分子动力学(MD)模拟。我们发现该肽折叠成具有天然和非天然氢键模式的发夹构象。在发夹肽折叠过程中观察到的所有折叠事件中,涉及YKGQP区域的环形成是一个重要事件。为了追踪YKGQP序列形成环的倾向的起源,我们使用GROMOS96力场,在恒定体积和温度(NVT)条件下,对从伸展、多聚脯氨酸II和天然I'型转角构象开始的序列进行了总模拟长度为300 ns的MD模拟。肽YKGQP的自由能景观显示出对应于Tyr和Pro侧链缔合的环构象、转角和伸展构象形式的最小值,最小值之间有适度的自由能势垒。为了阐明Gly在促进环形成中的作用,我们还在类似条件下从多聚脯氨酸II构象开始对突变肽YKAQP(Gly→Ala突变)进行了100 ns的MD模拟。在肽YKAQP的自由能景观中观察到对应于弯曲/转角和伸展构象的两个最小值。肽YKAQP的自由能景观中最小值之间的自由能势垒也适中。环构象主要由YKGQP肽采样,而伸展构象主要由YKAQP肽采样。我们还解释了为什么在这些模拟中YKGQP序列采样II型转角构象,而作为发夹肽DTVKLMYKGQPMTFR一部分的该序列在X射线晶体结构和我们早期对发夹肽折叠的模拟中都采样I'型转角构象。我们讨论了我们的结果对葡萄球菌核酸酶折叠的影响。

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