化学
三环
效力
酶
合理设计
药理学
抗菌剂
结构-活动关系
活动站点
立体化学
组合化学
生物化学
体外
生物
有机化学
遗传学
作者
Valentina Villamil,María-Agustina Rossi,María F. Mojica,P. Hinchliffe,V. Rodríguez Martínez,Valerie Castillo,Cecilia Saiz,Claudia Banchio,Mario A. Macías,James Spencer,Robert A. Bonomo,Alejandro J. Vila,Diego M. Moreno,Graciela Mahler
标识
DOI:10.1021/acs.jmedchem.3c02209
摘要
Antimicrobial resistance is a global public health threat. Metallo-β-lactamases (MBLs) inactivate β-lactam antibiotics, including carbapenems, are disseminating among Gram-negative bacteria, and lack clinically useful inhibitors. The evolving bisthiazolidine (BTZ) scaffold inhibits all three MBL subclasses (B1-B3). We report design, synthesis, and evaluation of BTZ analogues. Structure-activity relationships identified the BTZ thiol as essential, while carboxylate is replaceable, with its removal enhancing potency by facilitating hydrophobic interactions within the MBL active site. While the introduction of a flexible aromatic ring is neutral or detrimental for inhibition, a rigid (fused) ring generated nM benzobisheterocycle (BBH) inhibitors that potentiated carbapenems against MBL-producing strains. Crystallography of BBH:MBL complexes identified hydrophobic interactions as the basis of potency toward B1 MBLs. These data underscore BTZs as versatile, potent broad-spectrum MBL inhibitors (with activity extending to enzymes refractory to other inhibitors) and provide a rational approach to further improve the tricyclic BBH scaffold.
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