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色氨酸取代对C端截短的盖古林4的结构和抗菌活性的影响

Effects of a tryptophanyl substitution on the structure and antimicrobial activity of C-terminally truncated gaegurin 4.

作者信息

Won Hyung-Sik, Park Sang-Ho, Kim Hyung Eun, Hyun Byongkuk, Kim Mijin, Lee Byeong Jae, Lee Bong-Jin

机构信息

College of Pharmacy, Seoul National University, Seoul, South Korea.

出版信息

Eur J Biochem. 2002 Sep;269(17):4367-74. doi: 10.1046/j.1432-1033.2002.03139.x.

Abstract

Gaegurin 4 (GGN4), a 37-residue antimicrobial peptide, consists of two amphipathic alpha helices (residues 2-10 and 16-32) connected by a flexible loop region (residues 11-15). As part of an effort to develop new peptide antibiotics with low molecular mass, the activities of C-terminally truncated GGN4 analogues were tested. Delta24-37 GGN4, a peptide analogue with 14 residues truncated from the C-terminus of GGN4, showed a complete loss of antimicrobial activity. However, the single substitution of aspartic acid 16 by tryptophan (D16W) in the Delta24-37 GGN4 completely restored the antimicrobial activity, without any significant hemolytic activity. In contrast, neither the D16F nor K15W substitution of the Delta24-37 GGN4 allowed such a dramatic recovery of activity. In addition, the D16W substitution of the native GGN4 significantly enhanced the hemolytic activity as well as the antimicrobial activity. The structural effect of the D16W substitution in the Delta24-37 GGN4 was investigated by CD, NMR, and fluorescence spectroscopy. The results showed that the single tryptophanyl substitution at position 16 of the Delta24-37 GGN4 induced an alpha helical conformation in the previously flexible loop region in intact GGN4, thereby forming an entirely amphipathic alpha helix. In addition, the substituted tryptophan itself plays an important role in the membrane-interaction of the peptide.

摘要

盖古林4(GGN4)是一种由37个氨基酸残基组成的抗菌肽,由两个两亲性α螺旋(第2 - 10位和第16 - 32位氨基酸残基)通过一个柔性环区(第11 - 15位氨基酸残基)连接而成。作为开发低分子量新型肽类抗生素工作的一部分,对C端截短的GGN4类似物的活性进行了测试。Delta24 - 37 GGN4是一种从GGN4的C端截去14个氨基酸残基的肽类似物,其抗菌活性完全丧失。然而,在Delta24 - 37 GGN4中将天冬氨酸16位单取代为色氨酸(D16W)后,抗菌活性完全恢复,且无明显溶血活性。相比之下,Delta24 - 37 GGN4的D16F或K15W取代均未使活性如此显著地恢复。此外,天然GGN4的D16W取代显著增强了溶血活性和抗菌活性。通过圆二色光谱(CD)、核磁共振(NMR)和荧光光谱研究了Delta24 - 37 GGN4中D16W取代的结构效应。结果表明,在Delta24 - 37 GGN4的16位单引入色氨酸残基诱导了完整GGN4中先前柔性环区形成α螺旋构象,从而形成了一个完全两亲性的α螺旋。此外,取代的色氨酸本身在该肽与膜的相互作用中起重要作用。

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