Inhibitor Discovery of Full-Length New Delhi Metallo-β-Lactamase-1 (NDM-1)
Bingzheng Shen, Yan Yu, Hui Chen, Xin Cao, Xingzhen Lao, Yongliang Fang, Yun Yu Shi, Jiao Chen 等 9 位
China Pharmaceutical University Chinese Academy of Sciences Renmin Hospital of Wuhan University Institute of Soil Science
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摘要与影响
New Delhi metallo-β-lactmase-1 (NDM-1) has recently attracted extensive attention for its biological activities to catalyze the hydrolysis of almost all of β-lactam antibiotics. To study the catalytic property of NDM-1, the steady-kinetic parameters of NDM-1 toward several kinds of β-lactam antibiotics have been detected. It could effectively hydrolyze most β-lactams (k cat/K m ratios between 0.03 to 1.28 µmol⁻¹.s⁻¹), except aztreonam. We also found that thiophene-carboxylic acid derivatives could inhibit NDM-1 and have shown synergistic antibacterial activity in combination with meropenem. Flexible docking and quantum mechanics (QM) study revealed electrostatic interactions between the sulfur atom of thiophene-carboxylic acid derivatives and the zinc ion of NDM-1, along with hydrogen bond between inhibitor and His189 of NDM-1. The interaction models proposed here can be used in rational design of NDM-1 inhibitors.
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生物医学Antibiotic Resistance in Bacteria
Synthesis of β-Lactam Compounds · Phenothiazines and Benzothiazines Synthesis and Activities
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