Aumelas A, Sakarellos C, Lintner K, Fermandjian S, Khosla M C, Smeby R R, Bumpus F M
Proc Natl Acad Sci U S A. 1985 Apr;82(7):1881-5. doi: 10.1073/pnas.82.7.1881.
Affinity, residual agonist activity, and inhibitor properties of a series of angiotensin II analogs modified at the COOH-terminal position (X8-substituted peptides) have been probed for structure/conformation-biological activity relationships. The results emphasize (i) the large impact that subtle conformational variations caused by structural alterations in the position 8 side chain have on biological properties, (ii) the implication of the COOH-terminal carboxyl group in both affinity and intrinsic activity, and (iii) the influence that the bulkiness of the side chain in position 8 of antagonists has on the local conformation at the COOH terminus and thus on the inhibitory properties. In the hormone, the phenylalanine-8 ring is required for its steric influence and aromaticity to ensure a fully active conformation at the COOH terminus. Especially, correct orientation of the position 8 carboxyl group relative to the phenyl group of the phenylalanine residue may be necessary for agonistic activation of the angiotensin receptor complex. Replacement of the aromatic ring on the COOH-terminal residue by a nonaromatic group leads to incorrect orientation of the carboxyl group and causes the appearance of antagonist properties. Although the steric effects of the side chain can be modulated by specific interaction of its chemical groups (if any) with the peptide backbone, we found a good correlation between the size of the side chain-e.g., the steric parameter V gamma (the van der Waals volume consisting of the C alpha, C beta, and C gamma atoms), the conformational properties in the backbone (3J HC alpha-NH), and the binding capacities in all compounds tested.
对一系列在COOH末端位置进行修饰的血管紧张素II类似物(X8取代肽)的亲和力、残余激动剂活性和抑制剂特性进行了研究,以探讨结构/构象与生物活性之间的关系。结果强调了:(i)8位侧链结构改变引起的细微构象变化对生物学性质有很大影响;(ii)COOH末端羧基对亲和力和内在活性都有影响;(iii)拮抗剂8位侧链的体积对COOH末端的局部构象以及因此对抑制特性有影响。在该激素中,苯丙氨酸-8环因其空间影响和芳香性对于确保COOH末端的完全活性构象是必需的。特别是,8位羧基相对于苯丙氨酸残基的苯基的正确取向对于血管紧张素受体复合物的激动剂激活可能是必要的。用非芳香基团取代COOH末端残基上的芳香环会导致羧基取向不正确,并导致拮抗剂特性的出现。虽然侧链的空间效应可通过其化学基团(如果有的话)与肽主链的特异性相互作用来调节,但我们发现侧链大小(例如,由Cα、Cβ和Cγ原子组成的范德华体积的空间参数Vγ)、主链中的构象性质(3J HCα-NH)与所有测试化合物的结合能力之间存在良好的相关性。