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血管紧张素II及其类似物中氨基酸侧链构象:圆二色性和氢核磁共振的相关结果

Amino acid side chain conformation in angiotensin II and analogs: correlated results of circular dichroism and 1H nuclear magnetic resonance.

作者信息

Piriou F, Lintner K, Fermandjian S, Fromageot P, Khosla M C, Smeby R R, Bumpus F M

出版信息

Proc Natl Acad Sci U S A. 1980 Jan;77(1):82-6. doi: 10.1073/pnas.77.1.82.

Abstract

[1-Sarcosine,8-isoleucine]angiotensin II (Sar-Arg-Val-Tyr-Ile-His-Pro-Ile) has been shown to be a potent antagonist of the pressor action of angiotensin II. With a view to increase half-life in vivo of this peptide, the amino acid residue at position 4 (tyrosine) or position 5 (isoleucine) was replaced with the corresponding N-methylated residue. This change drastically reduced the antagonistic properties of this analog. The present work was therefore undertaken to investigate the effect of N-methylation on overall conformation of these peptides and to determine the conformational requirements for maximum agonistic or antagonistic properties. Conformation studies were carried out by circular dichroism and proton nuclear magnetic resonance spectroscopy in aqueous solution as a function of pH. The results indicated that: (i) angiotensin II and [1-sarcosine,8-isoleucine]angiotensin II gave practically identical spectroscopic data; and (ii) N-methylation in either position 4 or position 5 resulted in remarkable changes in the peptide backbone and a severe limitation in rotational freedom of side chains in tyrosine, isoleucine, and histidine residues. However, rotational restriction of the tyrosine side chain was found to be less pronounced in [1-sarcosine,4-N-methyltyrosine,8-isoleucine]angiotensin II than in [1-sarcosine,5-N-methylisoleucine,8-isoleucine]angiotensin II. Thus, these results suggest that: (i) the backbone and side chain structure of a potent angiotensin II antagonist should resemble that of the hormone, angiotensin II, so that it can mimic the hormone in recognizing and binding with the receptor on the cell membrane; and (ii) greater impact of N-methylation in position 5 on the overall conformation of these peptides points to the controlling influence of position 5 (isoleucine) in aligning the residues in the central segment (tyrosine-isoleucine-histidine) of angiotensin II and its potent agonist and antagonist analogs in a nearly extended structure. Any change in this arrangement may lead to reduced biological activity.

摘要

[1-肌氨酸,8-异亮氨酸]血管紧张素II(Sar-Arg-Val-Tyr-Ile-His-Pro-Ile)已被证明是血管紧张素II升压作用的强效拮抗剂。为了延长该肽在体内的半衰期,将第4位(酪氨酸)或第5位(异亮氨酸)的氨基酸残基替换为相应的N-甲基化残基。这一变化极大地降低了该类似物的拮抗特性。因此开展了本研究,以探究N-甲基化对这些肽整体构象的影响,并确定实现最大激动或拮抗特性的构象要求。通过圆二色性和质子核磁共振光谱在水溶液中作为pH的函数进行构象研究。结果表明:(i)血管紧张素II和[1-肌氨酸,8-异亮氨酸]血管紧张素II给出了几乎相同的光谱数据;(ii)第4位或第5位的N-甲基化导致肽主链发生显著变化,并严重限制了酪氨酸、异亮氨酸和组氨酸残基侧链的旋转自由度。然而,在[1-肌氨酸,4-N-甲基酪氨酸,8-异亮氨酸]血管紧张素II中,酪氨酸侧链的旋转限制比在[1-肌氨酸,5-N-甲基异亮氨酸,8-异亮氨酸]血管紧张素II中不太明显。因此,这些结果表明:(i)强效血管紧张素II拮抗剂的主链和侧链结构应类似于激素血管紧张素II,以便它能在识别和与细胞膜上的受体结合方面模拟该激素;(ii)第5位的N-甲基化对这些肽整体构象的更大影响表明,第5位(异亮氨酸)在使血管紧张素II及其强效激动剂和拮抗剂类似物的中央片段(酪氨酸-异亮氨酸-组氨酸)中的残基排列成几乎伸展的结构方面具有控制作用。这种排列的任何变化都可能导致生物活性降低。

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