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Ac-Pro-azaXaa-NHMe(Xaa = Asn、Asp、Ala)的构象偏好及分子内氢键对其在气相和溶液中稳定性的影响。

Conformational preferences of Ac-Pro-azaXaa-NHMe (Xaa = Asn, Asp, Ala) and the effect of intramolecular hydrogen bonds on their stability in gas phase and solution.

机构信息

LIMAS, Faculty of Sciences Dhar El Mahraz, University Sidi Mohamed Ben Abdallah, Fez, Morocco.

出版信息

J Mol Model. 2021 Dec 2;27(12):368. doi: 10.1007/s00894-021-04992-x.

DOI:10.1007/s00894-021-04992-x
PMID:34859310
Abstract

The conformational preferences of three azadipeptides Ac-Pro-azaXaa-NHMe [Xaa = Asn (1), Asp (2), Ala (3)] have been carried out in gas phase and solution (water) using the density functional method B3LYP/6-311 +  + G(d,p) to explore the effect of the change of side chain of azaamino acids at the i + 2 position on the stability of these components. The most stable conformations of compounds (1), (2), and (3) have an amid bond oriented trans, trans, and cis, respectively, in gas phase, whereas the orientation of amid bond in water solvent of compounds (2) and (3) has changed to cis and trans, respectively. We have also noticed the importance of backbone-side chain hydrogen bonds in the stabilization of the β turn motif in gas phase since this motif is more stable in the case of compounds (1) and (2) and less stable in the case of compound (3) in which these hydrogen bonds are absent. Furthermore, the βII(βII') turn structure is more stable than βI turn for all conformations of the three compounds in gas phase, while it is not true in the case of some conformations in solution. Moreover, the stability of β turn increases from azaAsn to azaAsp which could be due to the side chain's basic nature of azaAsn. In general, hydrogen bonds were found to play a key role in the stabilization of these compounds since most of conformers are lower in energy when they have more than two hydrogen bond interactions while conformations with one or no hydrogen bonds are higher in energy and thus less stable.

摘要

已在气相和溶液(水)中使用密度泛函方法 B3LYP/6-311 +  + G(d,p)研究了三种氮杂二肽 Ac-Pro-azaXaa-NHMe [Xaa = Asn (1)、Asp (2)、Ala (3)]的构象偏好,以探索在 i + 2 位置的侧链的变化对这些组分稳定性的影响。在气相中,化合物 (1)、(2) 和 (3) 的最稳定构象分别具有定向的反式、反式和顺式酰胺键,而在水溶剂中,化合物 (2) 和 (3) 的酰胺键取向分别变为顺式和反式。我们还注意到,在气相中,骨架-侧链氢键在稳定β 转角构象方面的重要性,因为在化合物 (1) 和 (2) 的情况下,这种构象更稳定,而在不存在这些氢键的化合物 (3) 的情况下,这种构象不太稳定。此外,在气相中,βII(βII') 转角结构对于三种化合物的所有构象都比βI 转角结构更稳定,而在溶液中的一些构象中则不是。此外,β 转角的稳定性从氮杂 Asn 增加到氮杂 Asp,这可能是由于氮杂 Asn 的侧链碱性。总的来说,氢键被发现对这些化合物的稳定起到关键作用,因为当它们具有多于两个氢键相互作用时,大多数构象的能量较低,而具有一个或没有氢键的构象的能量较高,因此不太稳定。

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