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对称破缺位置与构象受限同型肽偏好之间的相关性:一项分子动力学研究

Correlation between symmetry breaker position and the preferences of conformationally constrained homopeptides: a molecular dynamics investigation.

作者信息

Torras Juan, Zanuy David, Crisma Marco, Toniolo Claudio, Betran Oscar, Alemán Carlos

机构信息

Departament d'Enginyeria Química, EUETII, Universitat Politècnica de Catalunya, Pça Rei 15, Igualada 08700, Spain.

出版信息

Biopolymers. 2008;90(5):695-706. doi: 10.1002/bip.21031.

DOI:10.1002/bip.21031
PMID:18523945
Abstract

The conformational tendencies of C(alpha,alpha)-diethylglycine (Deg)-based peptides have been studied in solution using all atom molecular dynamics simulations. Specifically, the conformational effects of breaking the symmetry of the host Tfa-(Deg)(5)-OtBu (Tfa, trifluoroacetyl; OtBu, tert-butoxy) pentapeptide with punctual replacements at different sequence positions of one Deg residue by its corresponding guest chiral analogue, L-alpha-aminobutyric acid (L-Abu), have been examined by simulating the following peptides: Tfa-(Deg)(5)-OtBu, Tfa-(Deg)(2)-L-Abu-(Deg)(2)-OtBu, Tfa-(Deg)(3)-L-Abu-Deg-OtBu, and Tfa-(Deg)(4)-L-Abu-OtBu. Simulations show that only the Deg homopeptide is able to stabilize a 2.0(5) helix, even though a kinked arrangement with all the Deg residues adopting a fully-extended conformation was found to be stable when the L-Abu residue is introduced in the middle of the sequence. On the other hand, when the L-Abu residue is closer to the C-end of the sequence, the peptide chain prefers a partially folded 3(10)-helix. Additional simulations on Tfa-(Deg)(3)-L-Abu-(Deg)(3)-OtBu highlighted that, when the size of the Deg segments increases, their tendency to adopt a 2.0(5) helix predominates over the preferred folded conformation of L-Abu. The overall picture extracted after more than 300 ns of molecular dynamics simulation is that breaking the alpha-carbon symmetry of achiral C(alpha)-tetrasubstituted amino acids is a promising strategy to build up polypeptides with modulated conformational tendencies.

摘要

已使用全原子分子动力学模拟在溶液中研究了基于C(α,α)-二乙基甘氨酸(Deg)的肽的构象倾向。具体而言,通过模拟以下肽,研究了用其相应的客体手性类似物L-α-氨基丁酸(L-Abu)在一个Deg残基的不同序列位置进行点状取代来破坏主体Tfa-(Deg)5-OtBu(Tfa,三氟乙酰基;OtBu,叔丁氧基)五肽对称性的构象效应:Tfa-(Deg)5-OtBu、Tfa-(Deg)2-L-Abu-(Deg)2-OtBu、Tfa-(Deg)3-L-Abu-Deg-OtBu和Tfa-(Deg)4-L-Abu-OtBu。模拟表明,只有Deg同肽能够稳定2.0(5)螺旋,尽管当L-Abu残基引入序列中间时,发现所有Deg残基采用完全伸展构象的扭结排列是稳定的。另一方面,当L-Abu残基更靠近序列的C端时,肽链更倾向于部分折叠的3(10)螺旋。对Tfa-(Deg)3-L-Abu-(Deg)3-OtBu的额外模拟突出表明,当Deg片段的尺寸增加时,它们采用2.0(5)螺旋的倾向比L-Abu的首选折叠构象占主导。在超过300 ns的分子动力学模拟后得出的总体情况是,破坏非手性C(α)-四取代氨基酸的α-碳对称性是构建具有调节构象倾向的多肽的一种有前景的策略。

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