Fraunhofer Institute for Molecular Biology and Applied Ecology IME, ScreeningPort, 22525 Hamburg, Germany.
Drug Research Program, Division of Pharmaceutical Biosciences, University of Helsinki, FI-00014 Helsinki, Finland.
Int J Mol Sci. 2019 May 31;20(11):2686. doi: 10.3390/ijms20112686.
The serine protease Caseinolytic protease subunit P (ClpP) plays an important role for protein homeostasis in bacteria and contributes to various developmental processes, as well as virulence. Therefore, ClpP is considered as a potential drug target in Gram-positive and Gram-negative bacteria. In this study, we utilized a biochemical assay to screen several small molecule libraries of approved and investigational drugs for ClpP inhibitors. The approved drugs bortezomib, cefmetazole, cisplatin, as well as the investigational drug cDPCP, and the protease inhibitor 3,4-dichloroisocoumarin (3,4-DIC) emerged as ClpP inhibitors with IC values ranging between 0.04 and 31 µM. Compound profiling of the inhibitors revealed cefmetazole and cisplatin not to inhibit the serine protease bovine α-chymotrypsin, and for cefmetazole no cytotoxicity against three human cell lines was detected. Surface plasmon resonance studies demonstrated all novel ClpP inhibitors to bind covalently to ClpP. Investigation of the potential binding mode for cefmetazole using molecular docking suggested a dual covalent binding to Ser97 and Thr168. While only the antibiotic cefmetazole demonstrated an intrinsic antibacterial effect, cDPCP clearly delayed the bacterial growth recovery time upon chemically induced nitric oxide stress in a ClpP-dependent manner.
丝氨酸蛋白酶 Caspase 样蛋白酶亚基 P(ClpP)在细菌的蛋白质平衡中起着重要作用,并有助于各种发育过程以及毒力。因此,ClpP 被认为是革兰氏阳性和革兰氏阴性细菌中潜在的药物靶点。在这项研究中,我们利用生化测定法筛选了几种已批准和研究中的药物小分子文库,以寻找 ClpP 抑制剂。已批准的药物硼替佐米、头孢美唑、顺铂以及研究药物 cDPCP 和蛋白酶抑制剂 3,4-二氯异香豆素(3,4-DIC)均为 ClpP 抑制剂,IC 值在 0.04 至 31µM 之间。抑制剂的化合物分析表明,头孢美唑和顺铂不会抑制丝氨酸蛋白酶牛α-糜蛋白酶,并且未检测到头孢美唑对三种人类细胞系的细胞毒性。表面等离子体共振研究表明,所有新型 ClpP 抑制剂均与 ClpP 发生共价结合。使用分子对接研究头孢美唑的潜在结合模式表明,它可以同时与 Ser97 和 Thr168 发生共价结合。虽然只有抗生素头孢美唑表现出固有抗菌作用,但 cDPCP 明显以 ClpP 依赖的方式延迟了化学诱导的一氧化氮应激后细菌生长恢复时间。