Department of Pharmacy, University of Pisa, Via Bonanno 6, 56126 Pisa, Italy.
Molecules. 2023 May 27;28(11):4378. doi: 10.3390/molecules28114378.
Human deaths caused by Gram-negative bacteria keep rising due to the multidrug resistance (MDR) phenomenon. Therefore, it is a priority to develop novel antibiotics with different mechanisms of action. Several bacterial zinc metalloenzymes are becoming attractive targets since they do not show any similarities with the human endogenous zinc-metalloproteinases. In the last decades, there has been an increasing interest from both industry and academia in developing new inhibitors against those enzymes involved in lipid A biosynthesis, and bacteria nutrition and sporulation, e.g., UDP-[3-O-(R)-3-hydroxymyristoyl]--acetylglucosamine deacetylase (LpxC), thermolysin (TLN), and pseudolysin (PLN). Nevertheless, targeting these bacterial enzymes is harder than expected and the lack of good clinical candidates suggests that more effort is needed. This review gives an overview of bacterial zinc metalloenzyme inhibitors that have been synthesized so far, highlighting the structural features essential for inhibitory activity and the structure-activity relationships. Our discussion may stimulate and help further studies on bacterial zinc metalloenzyme inhibitors as possible novel antibacterial drugs.
由于多重耐药(MDR)现象,革兰氏阴性菌导致的人类死亡人数不断上升。因此,开发具有不同作用机制的新型抗生素是当务之急。由于这些细菌金属锌酶与人类内源性锌金属蛋白酶没有任何相似之处,因此它们已成为有吸引力的靶标。在过去几十年中,工业界和学术界对开发针对参与脂多糖生物合成、细菌营养和孢子形成的新型抑制剂越来越感兴趣,例如 UDP-[3-O-(R)-3-羟基十四酰基]-乙酰葡萄糖胺脱乙酰酶(LpxC)、热稳定丝氨酸蛋白酶(TLN)和假溶菌酶(PLN)。然而,靶向这些细菌酶比预期的更具挑战性,缺乏良好的临床候选药物表明需要付出更多的努力。本文综述了迄今为止合成的细菌金属锌酶抑制剂,重点介绍了对抑制活性至关重要的结构特征和结构-活性关系。我们的讨论可能会激发并有助于进一步研究作为潜在新型抗菌药物的细菌金属锌酶抑制剂。