Carotenuto Alfonso, Saviello Maria Rosaria, Auriemma Luigia, Campiglia Pietro, Catania Anna, Novellino Ettore, Grieco Paolo
Department of Pharmaceutical and Toxicological Chemistry, University of Naples Federico II, Via D. Montesano 49, I-80131 Naples, Italy.
Chem Biol Drug Des. 2007 Jan;69(1):68-74. doi: 10.1111/j.1747-0285.2007.00473.x.
Alpha-melanocyte-stimulating hormone (alpha-MSH) is an endogenous linear tridecapeptide with potent anti-inflammatory effects. We firstly demonstrated that alpha-MSH and its C-terminal sequence Lys-Pro-Val [alpha-MSH(11-13)] have antimicrobial effects against two major and representative pathogens: Staphylococcus aureus and Candida albicans. Successively, in an attempt to improve the candidacidal activity of alpha-MSH and to better understand the peptide structure-antifungal activity relations, we have recently designed and synthesized novel peptide analogues. We focused on the sequence alpha-MSH(6-13), which contains the invariant melanocortin core sequence His-Phe-Arg-Trp (6-9) and also contains the sequence Lys-Pro-Val (11-13) important for antimicrobial activity. In that structure-activity study, we discovered several compounds that have greater candidacidal activity than alpha-MSH, among which the peptide [d-Nal-7,Phe-12]-alpha-MSH(6-13) was the most potent. Here, we report a detailed conformational analysis by spectroscopic and computational methods of three peptides, alpha-MSH(6-13) (1), [d-Nal-7,Phe-12]-alpha-MSH(6-13) (2) and [d-Nal-7,Asp-12]-alpha-MSH(6-13) (3). Peptides were chosen on the basis of their candidacidal activities and were studied in membrane mimetic environment (SDS micelles). Different turn structures were observed for the three peptides and a conformation-activity model was developed based on these results. This study offers a structural basis for the design of novel peptide and non-peptide analogues to be used as new antimicrobial agents.
α-黑素细胞刺激素(α-MSH)是一种具有强大抗炎作用的内源性线性十三肽。我们首次证明α-MSH及其C端序列Lys-Pro-Val [α-MSH(11-13)] 对两种主要的代表性病原体具有抗菌作用:金黄色葡萄球菌和白色念珠菌。随后,为了提高α-MSH的杀念珠菌活性并更好地理解肽结构-抗真菌活性关系,我们最近设计并合成了新型肽类似物。我们聚焦于序列α-MSH(6-13),其包含不变的黑皮质素核心序列His-Phe-Arg-Trp (6-9),并且还包含对抗菌活性重要的序列Lys-Pro-Val (11-13)。在该结构-活性研究中,我们发现了几种杀念珠菌活性比α-MSH更强的化合物,其中肽 [d-Nal-7,Phe-12]-α-MSH(6-13) 活性最强。在此,我们报告通过光谱和计算方法对三种肽α-MSH(6-13) (1)、[d-Nal-7,Phe-12]-α-MSH(6-13) (2) 和 [d-Nal-7,Asp-12]-α-MSH(6-13) (3) 进行的详细构象分析。根据它们的杀念珠菌活性选择肽,并在膜模拟环境(SDS胶束)中进行研究。观察到这三种肽具有不同的转角结构,并基于这些结果建立了构象-活性模型。本研究为设计用作新型抗菌剂的新型肽和非肽类似物提供了结构基础。