Sharma Narayan, Hu Zhenxin, Crowder Michael W, Bennett Brian
Department of Chemistry and Biochemistry, Miami University, Oxford, Ohio 45056, USA.
J Am Chem Soc. 2008 Jul 2;130(26):8215-22. doi: 10.1021/ja0774562. Epub 2008 Jun 4.
Metallo-beta-lactamases are responsible for conferring antibiotic resistance on certain pathogenic bacteria. In consequence, the search for inhibitors that may be useful in combating antibiotic resistance has fueled much study of the active sites of these enzymes. There exists circumstantial evidence that the binding of substrates and inhibitors to metallo-beta-lactamases may involve binding to the organic part of the molecule, in addition to or prior to binding to one or more active site metal ions. It has also been postulated that a conformational change may accompany this putative binding. In the present study, electron paramagnetic resonance spectrokinetic study of a spin-labeled variant of the class B2 metallo-beta-lactamase ImiS identified movement of a component residue on a conserved alpha-helix in a catalytically competent time upon formation of a transient reaction intermediate with the substrate imipenem. In a significant subpopulation of ImiS, this conformational change was not associated with substrate binding to the active site metal ion but, rather, represents a distinct step in the reaction with ImiS. This observation has implications regarding the determinants of substrate specificity in metallo-beta-lactamases and the design of potentially clinically useful inhibitors.
金属β-内酰胺酶可使某些病原菌产生抗生素耐药性。因此,寻找可能有助于对抗抗生素耐药性的抑制剂推动了对这些酶活性位点的大量研究。有间接证据表明,底物和抑制剂与金属β-内酰胺酶的结合可能除了与一个或多个活性位点金属离子结合之外,或者在此之前,还涉及与分子有机部分的结合。也有人推测,这种假定的结合可能会伴随构象变化。在本研究中,对B2类金属β-内酰胺酶ImiS的自旋标记变体进行的电子顺磁共振光谱动力学研究表明,在与底物亚胺培南形成瞬态反应中间体后的催化活性时间内,保守α-螺旋上的一个组成残基发生了移动。在ImiS的一个重要亚群中,这种构象变化与底物与活性位点金属离子的结合无关,而是代表了与ImiS反应中的一个独特步骤。这一观察结果对金属β-内酰胺酶底物特异性的决定因素以及潜在临床有用抑制剂的设计具有重要意义。