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侧链环化在确定肽的受体结合构象中的作用:环三肽与血管紧张素II

The utility of side-chain cyclization in determining the receptor-bound conformation of peptides: cyclic tripeptides and angiotensin II.

作者信息

Kataoka T, Beusen D D, Clark J D, Yodo M, Marshall G R

机构信息

Center for Molecular Design, Washington University, St. Louis, Missouri 63130-4899.

出版信息

Biopolymers. 1992 Nov;32(11):1519-33. doi: 10.1002/bip.360321110.

Abstract

The effect of side-chain cyclization on accessible backbone conformations of tripeptides, X-Ala-Y (X and/or Y = Cys, Hcy (Hcy: homocysteine), cis 4-mercaptoproline (MPc), and trans 4-mercaptoproline (MPt)), was elucidated using two variants of systematic conformational search. In addition to cyclization through a disulfide bond, the thioether (-S-CH2-) and amide (-CO-NH-) side-chain analogues of Cys-Ala-Cys and Hcy-Ala-Hcy were evaluated. The number of valid backbone conformations and the allowed phi, psi space were evaluated for each compound, and the ability of the cyclic tripeptides to accommodate beta-turn conformations was examined in order to assess the value of cyclization in limiting conformational freedom. Based on the number of conformations, cyclization was highly effective in reducing the backbone degree of freedom: in order of decreasing number of conformations, Ala-Ala-Ala 1 >> Hcy-Ala-Hcy 2 >> Cys-Ala-Hcy 3 approximately equal to Hcy-Ala-Cys 4 >> MPc-Ala-Hcy 5, 7 > Cys-Ala-Cys 6 > MPc-Ala-Cys 8 > Hcy-Ala-MPt 9 > Cys-Ala-MPt 10 approximately equal to MPc-Ala-MPt 11. Although Hcy-Ala-Hcy 2 had the greatest number of conformations of the cyclic peptides studied, it was still greatly constrained relative to its linear analogue 1. The bicyclic ring system introduced by MP was even more effective in constraining the cycle, having greater impact at position 3 than at position 1. Under the conditions of the study, cyclization of MP-containing analogues could be effected only with the cis isomer (MPc) at position 1 and/or the trans isomer (MPt) at position 3. Sterically allowed conformations of Ala2 for the cyclic tripeptides 2-4 were generally similar to those of the linear tripeptide 1, while those of Cys-Ala-Cys 6 and MPc-Ala-Hcy 7 were restricted to a smaller region of phi 2, psi 2 space: the right- and left-handed alpha-helical conformation and the beta-conformation. This trend was even more pronounced for Hcy-Ala-MPt 9, Cys-Ala-MPt 10, and MPc-Ala-MPt 11, in which Ala2 was severely restricted to a very small region of phi, psi space: the left-handed alpha-helical conformation for 9-11, plus the beta conformation for 9. This suggests that MP at the 3-position is incompatible with a right-handed alpha-helical conformation at position 2.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

利用两种系统构象搜索变体,阐明了侧链环化对三肽X-Ala-Y(X和/或Y = 半胱氨酸(Cys)、同型半胱氨酸(Hcy)、顺式4-巯基脯氨酸(MPc)和反式4-巯基脯氨酸(MPt))可及主链构象的影响。除了通过二硫键环化外,还评估了Cys-Ala-Cys和Hcy-Ala-Hcy的硫醚(-S-CH2-)和酰胺(-CO-NH-)侧链类似物。评估了每种化合物的有效主链构象数量和允许的φ、ψ空间,并检查了环化三肽容纳β-转角构象的能力,以评估环化在限制构象自由度方面的价值。基于构象数量,环化在降低主链自由度方面非常有效:按构象数量减少的顺序,Ala-Ala-Ala 1 >> Hcy-Ala-Hcy 2 >> Cys-Ala-Hcy 3 约等于 Hcy-Ala-Cys 4 >> MPc-Ala-Hcy 5, 7 > Cys-Ala-Cys 6 > MPc-Ala-Cys 8 > Hcy-Ala-MPt 9 > Cys-Ala-MPt 10 约等于 MPc-Ala-MPt 11。尽管Hcy-Ala-Hcy 2在所研究的环肽中构象数量最多,但相对于其线性类似物1,它仍然受到很大限制。MP引入的双环系统在限制环方面甚至更有效,在第3位的影响比在第1位更大。在研究条件下,含MP类似物的环化仅在第1位的顺式异构体(MPc)和/或第3位的反式异构体(MPt)存在时才能实现。环化三肽2-4的Ala2的空间允许构象通常与线性三肽1的相似,而Cys-Ala-Cys 6和MPc-Ala-Hcy 7的构象则限制在较小的φ2、ψ2空间区域:右手和左手α-螺旋构象以及β-构象。对于Hcy-Ala-MPt 9、Cys-Ala-MPt 10和MPc-Ala-MPt 11,这种趋势更加明显,其中Ala2被严格限制在非常小的φ、ψ空间区域:9-11为左手α-螺旋构象,9还包括β-构象。这表明第3位的MP与第2位的右手α-螺旋构象不相容。(摘要截断于400字)

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