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建立磷脂酰甘油与达托霉素之间的构效关系。

Establishing the Structure-Activity Relationship between Phosphatidylglycerol and Daptomycin.

作者信息

Moreira Ryan, Taylor Scott D

机构信息

Department of Chemistry, University of Waterloo, 200 University Avenue West, Waterloo, Ontario N2L 3G1, Canada.

出版信息

ACS Infect Dis. 2022 Aug 12;8(8):1674-1686. doi: 10.1021/acsinfecdis.2c00262. Epub 2022 Jul 6.

Abstract

Daptomycin is a clinical antibiotic used to treat serious infections caused by Gram-positive bacteria. Although there is debate about the action mechanism of daptomycin, it is known that daptomycin requires both calcium and phosphatidylglycerol (PG) to exert its antibacterial effect. Despite the importance and uniqueness of the interaction of daptomycin with PG, very little is known about this interaction or the nascent daptomycin-PG complex. In this work, we establish a structure-activity relationship between daptomycin and PG through the synthesis of PG analogues. In total, nine PGs were synthesized using a divergent approach employing phosphoramidite chemistry. The interaction between daptomycin and these PGs was studied using fluorescence, circular dichroism, and isothermal titration calorimetry. It was determined that daptomycin is highly sensitive to the modification of the headgroup of PG and both hydroxyl groups influence membrane binding, oligomerization, and backbone structure. Methylation of each hydroxyl in the headgroup suggests that the binding pocket envelops both hydroxyl groups. A PG acyl tail chain length of at least 7-8 carbons is required for stoichiometric binding at micromolar peptide concentrations. Daptomycin binds to PG having 8-carbon, linear, unsaturated acyl groups (C8PGs) at the micromolar concentration and interacts with C8PG in essentially the same manner as when the PG is incorporated into a liposome, and thus, preassembly of individual PG moieties is not a prerequisite for binding, structural transition, and oligomerization.

摘要

达托霉素是一种用于治疗革兰氏阳性菌引起的严重感染的临床抗生素。尽管关于达托霉素的作用机制存在争议,但已知达托霉素需要钙和磷脂酰甘油(PG)才能发挥其抗菌作用。尽管达托霉素与PG相互作用的重要性和独特性,但对于这种相互作用或新生的达托霉素-PG复合物却知之甚少。在这项工作中,我们通过合成PG类似物建立了达托霉素与PG之间的构效关系。总共使用亚磷酰胺化学的发散方法合成了九种PG。使用荧光、圆二色性和等温滴定量热法研究了达托霉素与这些PG之间的相互作用。已确定达托霉素对PG头部基团的修饰高度敏感,两个羟基均影响膜结合、寡聚化和主链结构。头部基团中每个羟基的甲基化表明结合口袋包围了两个羟基。对于微摩尔浓度的肽的化学计量结合,需要至少7-8个碳原子的PG酰基尾链长度。达托霉素在微摩尔浓度下与具有8个碳原子的线性不饱和酰基(C8PGs)的PG结合,并与C8PG以与PG掺入脂质体时基本相同的方式相互作用,因此,单个PG部分的预组装不是结合、结构转变和寡聚化的先决条件。

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