Rotsides Photis, Lee Paula J, Webber Nakoa, Grasty Kimberly C, Beld Joris, Loll Patrick J
Department of Biochemistry & Molecular Biology and Department of Microbiology & Immunology, Drexel University College of Medicine, Philadelphia, Pennsylvania 19102, United States.
ACS Bio Med Chem Au. 2023 Nov 20;4(2):86-94. doi: 10.1021/acsbiomedchemau.3c00067. eCollection 2024 Apr 17.
Vancomycin's interactions with cellular targets drive its antimicrobial activity and also trigger expression of resistance against the antibiotic. Interaction partners for vancomycin have previously been identified using photoaffinity probes, which have proven to be useful tools for exploring vancomycin's interactome. This work seeks to develop diazirine-based vancomycin photoprobes that display enhanced specificity and bear fewer chemical modifications as compared to previous photoprobes. Using proteins fused to vancomycin's main cell-wall target, d-alanyl-d-alanine, we used mass spectrometry to show that these photoprobes specifically label known vancomycin-binding partners within minutes. In a complementary approach, we developed a Western-blot strategy targeting the vancomycin adduct of the photoprobes, eliminating the need for affinity tags and simplifying the analysis of photolabeling reactions. Together, the probes and identification strategy provide a novel and streamlined pipeline for identifying vancomycin-binding proteins.
万古霉素与细胞靶点的相互作用驱动其抗菌活性,同时也引发对该抗生素的耐药性表达。此前已使用光亲和探针鉴定出万古霉素的相互作用伙伴,事实证明这些探针是探索万古霉素相互作用组的有用工具。这项工作旨在开发基于重氮丙啶的万古霉素光探针,与之前的光探针相比,该探针具有更高的特异性且化学修饰更少。利用与万古霉素主要细胞壁靶点d -丙氨酰 - d -丙氨酸融合的蛋白质,我们通过质谱表明,这些光探针在几分钟内就能特异性标记已知的万古霉素结合伙伴。作为一种补充方法,我们开发了一种针对光探针万古霉素加合物的蛋白质印迹策略,无需亲和标签,简化了光标记反应的分析。这些探针和鉴定策略共同为鉴定万古霉素结合蛋白提供了一种新颖且简化的流程。