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Effective GTP-replacing FtsZ inhibitors and antibacterial mechanism of action

机译:有效的替代GTP的FtsZ抑制剂和抗菌作用机理

摘要

© 2014 American Chemical Society. Essential cell division protein FtsZ is considered an attractive target in the search for antibacterials with novel mechanisms of action to overcome the resistance problem. FtsZ undergoes GTP-dependent assembly at midcell to form the Z-ring, a dynamic structure that evolves until final constriction of the cell. Therefore, molecules able to inhibit its activity will eventually disrupt bacterial viability. In this work, we report a new series of small molecules able to replace GTP and to specifically inhibit FtsZ, blocking the bacterial division process. These new synthesized inhibitors interact with the GTP-binding site of FtsZ (Kd = 0.4-0.8 μM), display antibacterial activity against Gram-positive pathogenic bacteria, and show selectivity against tubulin. Biphenyl derivative 28 stands out as a potent FtsZ inhibitor (Kd = 0.5 μM) with high antibacterial activity [MIC (MRSA) = 7 μM]. In-depth analysis of the mechanism of action of compounds 22, 28, 33, and 36 has revealed that they act as effective inhibitors of correct FtsZ assembly, blocking bacterial division and thus leading to filamentous undivided cells. These findings provide a compelling rationale for the development of compounds targeting the GTP-binding site as antibacterial agents and open the door to antibiotics with novel mechanisms of action.
机译:©2014美国化学学会。必需细胞分裂蛋白FtsZ被认为是寻找具有克服耐药性问题的新作用机制的抗菌药物的有吸引力的靶标。 FtsZ在中膜细胞处依赖于GTP的组装形成Z环,Z环是一种动态结构,一直进化到细胞最终收缩为止。因此,能够抑制其活性的分子最终将破坏细菌的生存能力。在这项工作中,我们报告了一系列新的小分子,它们能够替代GTP并特异性抑制FtsZ,从而阻止细菌分裂过程。这些新的合成抑制剂与FtsZ的GTP结合位点(Kd = 0.4-0.8μM)相互作用,对革兰氏阳性病原菌具有抗菌活性,对微管蛋白具有选择性。联苯衍生物28作为高效FtsZ抑制剂(Kd = 0.5μM)具有很高的抗菌活性[MIC(MRSA)= 7μM]。对化合物22、28、33和36的作用机理的深入分析表明,它们可作为正确FtsZ装配的有效抑制剂,阻断细菌分裂,从而导致丝状未分裂的细胞。这些发现为开发靶向GTP结合位点的化合物作为抗菌剂提供了令人信服的理由,并为具有新作用机制的抗生素打开了大门。

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