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含脱氢丙氨酸模型肽的合成与构象研究。

Synthetic and conformational studies on dehydroalanine-containing model peptides.

作者信息

Gupta A, Chauhan V S

机构信息

International Center for Genetic Engineering and Biotechnology, New Delhi, India.

出版信息

Biopolymers. 1990;30(3-4):395-403. doi: 10.1002/bip.360300317.

Abstract

Three model dipeptides containing a dehydroalanine residue (delta Ala) at the C-terminal, Boc-X-delta Ala-NHCH3 [X = Ala, Val, and Phe,] have been synthesized and their solution conformations investigated by 1H-NMR, IR, and CD spectroscopy. NMR studies on these peptides in CDCl3 clearly indicate that the NH group of dehydroalanine is involved in an intramolecular hydrogen bond. This conclusion is supported by IR studies also. Nuclear Overhauser effect (NOE) studies are also accommodative of an inverse gamma-turn-type of conformation that is characterized by conformational angles of phi approximately -70 degrees and psi approximately +70 degrees around the X residue, and a C alpha i + 1 H-Ni + 2H interproton distance of 2.5 A. It appears that unlike dehydrophenylalanine or dehydroleucine, which tend to stabilize beta-turn type of structures occupying the i + 2 position of the turn, dehydroalanine favors the formation of an inverse gamma-turn, centered at the preceding L-residue in such solvents as CDCl3 and (CD3)2SO. A comparison of solution conformation of Boc Val-delta Ala-NHCH3 with the corresponding saturated analogue, Boc-Val-Ala-NHCH3, is also presented and shows that dehydroalanine is responsible for inducing the turn structure. It may be possible to design peptides with different preferred conformations using the suitable dehydroamino acid.

摘要

合成了三种在C端含有脱氢丙氨酸残基(δAla)的模型二肽,即Boc-X-δAla-NHCH3 [X = Ala、Val和Phe],并通过1H-NMR、IR和CD光谱研究了它们的溶液构象。在CDCl3中对这些肽进行的NMR研究清楚地表明,脱氢丙氨酸的NH基团参与了分子内氢键。IR研究也支持这一结论。核Overhauser效应(NOE)研究也证实了一种反向γ-转角型构象,其特征是围绕X残基的构象角φ约为-70度,ψ约为+70度,且Cαi + 1 H-Ni + 2H质子间距离为2.5 Å。与倾向于稳定占据转角i + 2位置的β-转角型结构的脱氢苯丙氨酸或脱氢亮氨酸不同,在CDCl3和(CD3)2SO等溶剂中,脱氢丙氨酸有利于以前一个L-残基为中心形成反向γ-转角。还比较了Boc Val-δAla-NHCH3与相应饱和类似物Boc-Val-Ala-NHCH3的溶液构象,结果表明脱氢丙氨酸是诱导转角结构的原因。使用合适的脱氢氨基酸可能设计出具有不同优选构象的肽。

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