Research Service, Louis Stokes Cleveland Department of Veteran Affairs Medical Center, Cleveland, OH 44106, USA.
Biochem Pharmacol. 2012 Feb 15;83(4):462-71. doi: 10.1016/j.bcp.2011.11.015. Epub 2011 Dec 2.
β-Lactamase inhibitors (clavulanic acid, sulbactam, and tazobactam) contribute significantly to the longevity of the β-lactam antibiotics used to treat serious infections. In the quest to design more potent compounds and to understand the mechanism of action of known inhibitors, 6β-(hydroxymethyl)penicillanic acid sulfone (6β-HM-sulfone) was tested against isolates expressing the class A TEM-1 β-lactamase and a clinically important variant of the AmpC cephalosporinase of Pseudomonas aeruginosa, PDC-3. The addition of the 6β-HM-sulfone inhibitor to ampicillin was highly effective. 6β-HM-sulfone inhibited TEM-1 with an IC(50) of 12 ± 2 nM and PDC-3 with an IC(50) of 180 ± 36 nM, and displayed lower partition ratios than commercial inhibitors, with partition ratios (k(cat)/k(inact)) equal to 174 for TEM-1 and 4 for PDC-3. Measured for 20 h, 6β-HM-sulfone demonstrated rapid, first-order inactivation kinetics with the extent of inactivation being related to the concentration of inhibitor for both TEM-1 and PDC-3. Using mass spectrometry to gain insight into the intermediates of inactivation of this inhibitor, 6β-HM-sulfone was found to form a major adduct of +247 ± 5 Da with TEM-1 and +245 ± 5 Da with PDC-3, suggesting that the covalently bound, hydrolytically stabilized acyl-enzyme has lost a molecule of water (HOH). Minor adducts of +88 ± 5 Da with TEM-1 and +85 ± 5 Da with PDC-3 revealed that fragmentation of the covalent adduct can result but appeared to occur slowly with both enzymes. 6β-HM-sulfone is an effective and versatile β-lactamase inhibitor of representative class A and C enzymes.
β-内酰胺酶抑制剂(克拉维酸、舒巴坦和他唑巴坦)显著延长了用于治疗严重感染的β-内酰胺类抗生素的使用寿命。为了设计更有效的化合物并了解已知抑制剂的作用机制,测试了 6β-(羟甲基)青霉素酸砜(6β-HM-砜)对表达 A 类 TEM-1 内酰胺酶和铜绿假单胞菌中一种重要的临床变异型 AmpC 头孢菌素酶的分离株的抑制作用。在氨苄青霉素中加入 6β-HM-砜抑制剂具有高度的有效性。6β-HM-砜对 TEM-1 的 IC50 为 12±2 nM,对 PDC-3 的 IC50 为 180±36 nM,与商业抑制剂相比,其分配比更低,对于 TEM-1 和 PDC-3,分配比(kcat/k 失活)分别等于 174 和 4。在 20 小时的测量中,6β-HM-砜表现出快速的、一级失活动力学,失活程度与抑制剂浓度有关,这对 TEM-1 和 PDC-3 都是如此。使用质谱法深入了解该抑制剂失活的中间体,发现 6β-HM-砜与 TEM-1 形成+247±5 Da 的主要加合物,与 PDC-3 形成+245±5 Da 的主要加合物,表明共价结合的、水解稳定的酰-酶失去了一个水分子(HOH)。与 TEM-1 形成+88±5 Da 的次要加合物和与 PDC-3 形成+85±5 Da 的次要加合物表明共价加合物的片段化可能发生,但在两种酶中似乎发生得很慢。6β-HM-砜是一种有效的、多功能的代表 A 类和 C 类酶的β-内酰胺酶抑制剂。