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Mechanistic analysis of muraymycin analogues: A guide to the design of MraY inhibitors

机译:穆拉霉素类似物的机理分析:MraY抑制剂设计指南

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The systematic structure-activity relationship (SAR) of the muraymycins (MRYs) using an Ugi four-component reaction (U4CR) was investigated. The impact of the lipophilic substituent on antibacterial activity was significant, and the analogues 8 and 9 having a lipophilic side chain exhibited good activity against a range of Gram-positive bacterial pathogens, including MRSA and VRE. Further investigation of compounds 8 and 9 revealed these analogues to be selective inhibitors of the MraY transferase and nontoxic to HepG2 cells. The SAR of the accessory urea-peptide moiety indicated that it could be simplified. Our SAR study of the MRYs suggests a probable mechanism for inhibition of the MraY, where the inner moiety of the urea-dipeptide motif interacts with the carbohydrate recognition domain in the cytoplasmic loop 5. The predicted binding model would provide further direction toward the design of potent MraY inhibitors. This study has set the stage for the generation of novel antibacterial "lead" compounds based on MRYs. (Figure presented)
机译:研究了使用Ugi四组分反应(U4CR)的穆雷霉素(MRY)的系统结构-活性关系(SAR)。亲脂性取代基对抗菌活性的影响是显着的,并且具有亲脂性侧链的类似物8和9显示出对一系列革兰氏阳性细菌病原体,包括MRSA和VRE的良好活性。化合物8和9的进一步研究表明,这些类似物是MraY转移酶的选择性抑制剂,对HepG2细胞无毒。辅助脲-肽部分的SAR表明可以简化。我们对MRY的SAR研究提出了一种可能的抑制MraY的机制,其中尿素二肽基序的内部部分与细胞质环5中的碳水化合物识别域相互作用。预测的结合模型将提供进一步的设计方向有效的MraY抑制剂。这项研究为基于MRY的新型抗菌“铅”化合物的产生奠定了基础。 (图示)

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