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首页> 外文期刊>Proteomics >Ampicillin/penicillin-binding protein interactions as a model drug-target system to optimize affinity pull-down and mass spectrometric strategies for target and pathway identification
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Ampicillin/penicillin-binding protein interactions as a model drug-target system to optimize affinity pull-down and mass spectrometric strategies for target and pathway identification

机译:氨苄青霉素/青霉素结合蛋白相互作用作为模型药物-靶标系统,可优化用于靶标和途径鉴定的亲和力下拉和质谱分析策略

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The identification and validation of the targets of active compounds identified in cell-based assays is an important step in preclinical drug development. New analytical approaches that combine drug affinity pull-down assays with mass spectrometry (MS) could lead to the identification of new targets and druggable pathways. In this work, we investigate a drug-target system consisting of ampicillin- and penicillin-binding proteins (PBPs) to evaluate and compare different amino-reactive resins for the immobilization of the affinity compound and mass spectrometric methods to identify proteins from drug affinity pull-down assays. First, ampicillin was immobilized onto various amino-reactive resins, which were compared in the ampicillin-PBP model with respect to their nonspecific binding of proteins from an Escherichia coli membrane extract. Dynal M-270 magnetic beads were chosen to further study the system as a model for capturing and identifying the targets of ampicillin, PBPs that were specifically and covalently bound to the immobilized ampicillin. The PBPs were identified, after in situ digestion of proteins bound to ampicillin directly on the beads, by using either one-dimensional (1-D) or two-dimensional (2-D) liquid chromatography (LC) separation techniques followed by tandem mass spectrometry (MS/MS) analysis. Alternatively, an elution with N-lauroylsarcosine (sarcosyl) from the ampicillin beads followed by in situ digestion and 2-D LC-MS/MS analysis identified proteins potentially interacting noncovalently with the PBPs or the ampicillin. The in situ approach required only little time, resources, and sample for the analysis. The combination of drug affinity pull-down assays with in situ digestion and 2-D LC-MS/MS analysis is a useful tool in obtaining complex information about a primary drug target as well as its protein interactors.
机译:在基于细胞的测定中鉴定和鉴定活性化合物的靶标是临床前药物开发的重要步骤。将药物亲和力下拉测定与质谱(MS)相结合的新分析方法可能会导致鉴定新的靶标和可药物化途径。在这项工作中,我们研究了由氨苄青霉素和青霉素结合蛋白(PBP)组成的药物靶标系统,以评估和比较不同氨基反应性树脂对亲和化合物的固定化作用以及质谱法,以从药物亲和力中鉴定蛋白质向下测定。首先,将氨苄青霉素固定在各种氨基反应性树脂上,在氨苄青霉素-PBP模型中将其与大肠杆菌膜提取物中蛋白质的非特异性结合进行比较。选择Dynal M-270磁珠来进一步研究该系统,作为捕获和鉴定与固定化氨苄青霉素共价结合的氨苄青霉素,PBP靶标的模型。通过使用一维(1-D)或二维(2-D)液相色谱(LC)分离技术,然后串联质谱,在珠子上直接消化与氨苄青霉素直接结合的蛋白质后,鉴定了PBP。光谱分析(MS / MS)。或者,用氨苄青霉素珠上的N-月桂酰肌氨酸(肌氨酸)洗脱,然后原位消化和2-D LC-MS / MS分析鉴定出可能与PBP或氨苄青霉素非共价相互作用的蛋白质。原位方法只需要很少的时间,资源和样品即可进行分析。药物亲和力下拉测定法与原位消化法和二维LC-MS / MS分析相结合,是获得有关一级药物靶标及其蛋白相互作用物的复杂信息的有用工具。

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