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首页> 外文期刊>Journal of Medicinal Chemistry >Sulfonamide-Based Inhibitors of Aminoglycoside Acetyltransferase Eis Abolish Resistance to Kanamycin in Mycobacterium tuberculosis
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Sulfonamide-Based Inhibitors of Aminoglycoside Acetyltransferase Eis Abolish Resistance to Kanamycin in Mycobacterium tuberculosis

机译:氨基糖苷类乙酰基转移酶E的基于磺酰胺的抑制剂可消除结核分枝杆菌对卡那霉素的抗药性

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A two-drug combination therapy where one drug targets an offending cell and the other targets a resistance mechanism to the first drug is a time-tested, yet underexploited approach to combat or prevent drug resistance. By high-throughput screening, we identified a sulfonamide scaffold that served as a pharmacophore to generate inhibitors of Mycobacterium tuberculosis acetyltransferase Eis, whose upregulation causes resistance to the aminoglycoside (AG) antibiotic kanamycin A (KAN) in Mycobacterium tuberculosis. Rational systematic derivatization of this scaffold to maximize Eis inhibition and abolish the Eis-mediated KAN resistance of M. tuberculosis yielded several highly potent agents. A crystal structure of Eis in complex with one of the most potent inhibitors revealed that the inhibitor bound Eis in the AG-binding pocket held by a conformationally malleable region of Eis (residues 28-37) bearing key hydrophobic residues. These Eis inhibitors are promising leads for preclinical development of innovative AG combination therapies against resistant TB.
机译:两种药物的联合疗法是一种经过时间考验但尚未充分利用的抗或预防药物耐药性的方法,其中一种药物靶向有问题的细胞,另一种药物靶向对第一种药物的耐药机制。通过高通量筛选,我们确定了一种磺酰胺支架,可作为药效基团产生结核分枝杆菌乙酰转移酶Eis的抑制剂,其上调引起对结核分枝杆菌中氨基糖苷(AG)抗生素卡那霉素A(KAN)的耐药性。对该支架进行合理的系统衍生化,以最大程度地抑制Eis,并消除了结核分枝杆菌的Eis介导的KAN抗性,从而产生了几种高效药物。与最有效的抑制剂之一复合的Eis的晶体结构表明,该抑制剂结合了由具有关键疏水性残基的Eis的构象可延展区域(残基28-37)固定的AG结合口袋中的Eis。这些Eis抑制剂是抗药性结核病创新AG组合疗法临床前开发的有前途的先导。

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