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Design, Synthesis, and Antibacterial Properties of Dual-Ligand Inhibitors of Acetyl-CoA Carboxylase

机译:乙酰辅酶A羧化酶双配体抑制剂的设计,合成及抗菌性能

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摘要

There is an urgent demand for the development of new antibiotics due to the increase in drug-resistant pathogenic bacteria. A novel target is the multifunctional enzyme acetyl-CoA carboxylase (ACC), which catalyzes the first committed step in fatty acid synthesis and consists of two enzymes: biotin carboxylase and carboxyltransferase. Covalently attaching known inhibitors against these enzymes with saturated hydrocarbon linkers of different lengths generated dual-ligand inhibitors. Kinetic results revealed that the dualligands inhibited the ACC complex in the nanomolar range. Microbiology assays showed that the dual-ligand with a 15-carbon linker did not exhibit any antibacterial activity, while the dual-ligand with a 7-carbon linker displayed broadspectrum antibacterial activity as well as a decreased susceptibility in the development of bacterial resistance. These results suggest that the properties of the linker are vital for antibacterial activity and show how inhibiting two different enzymes with the same compound increases the overall potency while also impeding the development of resistance.
机译:由于耐药性致病菌的增加,迫切需要开发新的抗生素。一个新的目标是多功能酶乙酰辅酶A羧化酶(ACC),该酶催化脂肪酸合成中的第一步,并由两种酶组成:生物素羧化酶和羧转移酶。将已知的针对这些酶的抑制剂与不同长度的饱和烃接头共价连接,生成双配体抑制剂。动力学结果表明,双配体在纳摩尔范围内抑制了ACC复合物。微生物学分析表明,具有15个碳连接基的双配体没有显示任何抗菌活性,而具有7个碳连接基的双配体显示了广谱抗菌活性,并且在细菌耐药性发展中的敏感性降低。这些结果表明,接头的性质对于抗菌活性至关重要,并显示出用相同的化合物抑制两种不同的酶如何增加总体效力,同时也阻碍了耐药性的发展。

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