首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >Molecular dynamics simulations of conserved Hox protein hexapeptides - II. Folded structures in water solution
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Molecular dynamics simulations of conserved Hox protein hexapeptides - II. Folded structures in water solution

机译:保守的Hox蛋白六肽的分子动力学模拟-II。水溶液中的折叠结构

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MD simulations of Hox protein N-terminal hexapeptides TFDWMK (Hox B1) and LFPWMR (Hox B8) are performed in water solution and complemented with simulations where the aromatic residues phenylalanine (F) and tryptophan (W) are successively replaced by alanine (A). Results from this study give support that different hexapeptides can form similar folded structures in water, stabilized mainly by internal hydrogen bonding where the arrangement of the aromatic side chains together with the methionine (M) side chain forming a hydrophobic core covers and protects the internal hydrogen bonds from water. Replacement of the aromatic side chains with Alanine did not lead to unfolding, but rather the hexapeptides were slightly changing their conformations where the Methionine side chain together with the peptide backbone protected the internal hydrogen bonds and the hexapeptides remain folded. Our results give support that these hexapeptides are able to remain folded to some extent even without the aromatic side chains. (c) 2006 Elsevier B.V. All rights reserved.
机译:在水溶液中进行Hox蛋白N端六肽TFDWMK(Hox B1)和LFPWMR(Hox B8)的MD模拟,并补充了其中芳香残基苯丙氨酸(F)和色氨酸(W)依次被丙氨酸(A)取代的模拟。这项研究的结果支持不同的六肽可以在水中形成相似的折叠结构,主要通过内部氢键来稳定,其中芳族侧链与蛋氨酸(M)侧链一起形成疏水核,从而覆盖并保护了内部氢。水键。用丙氨酸取代芳族侧链不会导致解折叠,但是在蛋氨酸侧链与肽主链一起保护内部氢键且六肽保持折叠的情况下,六肽稍微改变了它们的构象。我们的结果支持了这些六肽即使没有芳香族侧链也能够保持一定程度的折叠。 (c)2006 Elsevier B.V.保留所有权利。

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