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变链菌素1140的羧基类似物,一种用于发现先导抗菌药物的骨架。

Carboxyl Analogue of Mutacin 1140, a Scaffold for Lead Antibacterial Discovery.

作者信息

Escano Jerome, Ravichandran Akshaya, Salamat Bita, Smith Leif

机构信息

Department of Biological Sciences, Texas A&M University, College Station, Texas, USA.

Department of Biological Sciences, Texas A&M University, College Station, Texas, USA

出版信息

Appl Environ Microbiol. 2017 Jun 30;83(14). doi: 10.1128/AEM.00668-17. Print 2017 Jul 15.

Abstract

Mutacin 1140 belongs to the epidermin group of lantibiotics. Epidermin class lantibiotics are ribosomally synthesized and posttranslationally modified antibiotics with potent activity against Gram-positive bacteria. In particular, this class is effective at targeting drug-resistant , methicillin-resistant (MRSA), , and A C-terminal -[(Z)-2-aminovinyl]-d-cysteine (AviCys) residue is derived from a decarboxylation of a terminal cysteine that is involved in lanthionine ring formation. Studies on mutacin 1140 have revealed new insight into the structural importance of the C-terminal AviCys residue. A C-terminal carboxyl analogue of mutacin 1140 was engineered. Capping the C-terminal carboxyl group with a primary amine restores bioactivity and affords a novel opportunity to synthesize new analogues. A C-terminal fluorescein-labeled mutacin 1140 analogue traps lipid II into a large lipid II lantibiotic complex, similar to that observed for the lantibiotic nisin. A C-terminal carboxyl analogue of mutacin 1140 competitively inhibits the activity of native mutacin 1140 and nisin. The presence of a C-terminal carboxyl group prevents the formation of the large lipid II lantibiotic complexes but does not prevent the binding of the lantibiotic to lipid II. This study addressed the importance of the C-terminal -[(Z)-2-aminovinyl]-d-cysteine (AviCys) residue for antibacterial activity. We have learned that the posttranslational modification for making the AviCys residue is presumably important for the lateral assembly mechanism of activity that traps lipid II into a large complex. The C-terminal carboxyl analogue of this class of lantibiotics is agreeable to the addition of a wide variety of substrates. The addition of fluorescein enabled visualization of the epidermin class of lantibiotics in action. These results are significant because, as we demonstrate, the presence of the AviCys residue is not essential for bioactivity, but, more importantly, the removal of the carboxyl group is essential. The ability to make a C-terminal carboxyl analogue that is modifiable will facilitate the synthesis of novel analogues of the epidermin class of lantibiotics that can be developed for new applications.

摘要

变链菌素1140属于羊毛硫抗生素中的表皮菌素类。表皮菌素类羊毛硫抗生素是通过核糖体合成并经翻译后修饰的抗生素,对革兰氏阳性菌具有强大的活性。特别地,这类抗生素对于靶向耐药菌、耐甲氧西林金黄色葡萄球菌(MRSA)等非常有效。一个C端-[(Z)-2-氨基乙烯基]-D-半胱氨酸(AviCys)残基源自参与羊毛硫氨酸环形成的末端半胱氨酸的脱羧反应。对变链菌素1140的研究揭示了C端AviCys残基结构重要性的新见解。构建了变链菌素1140的C端羧基类似物。用伯胺封闭C端羧基可恢复生物活性,并为合成新类似物提供了新机会。一个C端荧光素标记的变链菌素1140类似物将脂磷壁酸转运载体II捕获到一个大型脂磷壁酸转运载体-羊毛硫抗生素复合物中,这与在羊毛硫抗生素乳链菌肽中观察到的情况类似。变链菌素1140的C端羧基类似物竞争性抑制天然变链菌素1140和乳链菌肽的活性。C端羧基的存在可阻止大型脂磷壁酸转运载体-羊毛硫抗生素复合物的形成,但并不阻止羊毛硫抗生素与脂磷壁酸转运载体II的结合。本研究探讨了C端-[(Z)-2-氨基乙烯基]-D-半胱氨酸(AviCys)残基对抗菌活性的重要性。我们了解到,产生AviCys残基的翻译后修饰可能对于将脂磷壁酸转运载体II捕获到大型复合物中的活性侧向组装机制很重要。这类羊毛硫抗生素的C端羧基类似物适合添加多种底物。荧光素的添加使得能够可视化表皮菌素类羊毛硫抗生素的作用过程。这些结果意义重大,因为正如我们所证明的,AviCys残基的存在对于生物活性并非必不可少,但更重要的是,羧基的去除是必不可少的。能够制备可修饰的C端羧基类似物将有助于合成表皮菌素类羊毛硫抗生素的新型类似物,可用于开发新的应用。

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