Bann Samantha J, Cochrane Stephen A
School of Chemistry and Chemical Engineering, Queen's University Belfast David Keir Building, Stranmillis Road Belfast BT9 5AG UK
RSC Med Chem. 2024 Oct 21;16(1):373-8. doi: 10.1039/d4md00685b.
Cyclic lipopeptides (CLiPs) are a highly diverse class of secondary metabolites produced by bacteria and fungi. Examples of CLiPs have been found that possess potent antimicrobial activity against multidrug-resistant Gram-negative bacteria. Globomycin is a 19-membered CLiP that kills both Gram-positive and Gram-negative bacteria through inhibition of lipoprotein signal peptidase II (Lsp). It can only be obtained in small quantities from its producer strain, so there has been much interest in development of synthetic methods to access globomycin and analogues. Globomycin contains an N-terminal anti-α-methyl-β-hydroxy nonanoyl lipid tail, whose hydroxyl group forms an ester with the C-terminal carboxylate. Constructing the anti-arrangement between the α-methyl and β-hydroxy is synthetically challenging and previous globomycin syntheses are not compatible with diversification of the lipid tail after the stereocenters have been installed. Herein, we describe a new approach for the synthesis of globomycin that allows for facile lipid diversification. Using an anti-Evans Aldol condensation, a common intermediate is obtained that allows different "lipid swapping" through Grubbs-catalyzed cross-metathesis. Upon auxiliary cleavage, the resulting lipid can then be utilized in solid-phase peptide synthesis. Given the plethora of lipopeptides that contain β-hydroxy lipids, this method offers a convenient approach for convergent generation of lipopeptide analogues.
环脂肽(CLiPs)是细菌和真菌产生的一类高度多样化的次级代谢产物。已发现一些环脂肽对多重耐药革兰氏阴性菌具有强大的抗菌活性。球霉素是一种由19个成员组成的环脂肽,它通过抑制脂蛋白信号肽酶II(Lsp)来杀死革兰氏阳性菌和革兰氏阴性菌。它只能从其产生菌中少量获得,因此人们对开发合成球霉素及其类似物的方法非常感兴趣。球霉素含有一个N端的反式-α-甲基-β-羟基壬酰脂质尾巴,其羟基与C端羧酸盐形成酯。构建α-甲基和β-羟基之间的反式排列在合成上具有挑战性,并且以前的球霉素合成方法在安装立体中心后与脂质尾巴的多样化不兼容。在此,我们描述了一种合成球霉素的新方法,该方法允许轻松进行脂质多样化。使用反式伊文斯羟醛缩合反应,得到一个通用中间体,该中间体允许通过格拉布催化剂催化的交叉复分解反应进行不同的“脂质交换”。在辅助裂解后,所得脂质可用于固相肽合成。鉴于含有β-羟基脂质的脂肽种类繁多,该方法为脂肽类似物的汇聚生成提供了一种便捷途径。