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Structure of Apo- and Monometalated Forms of NDM-1—A Highly Potent Carbapenem-Hydrolyzing Metallo-β-Lactamase

机译:NDM-1的载脂和单金属化形式的结构—一种高强度碳青霉烯水解金属β-内酰胺酶

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摘要

The New Delhi Metallo-β-lactamase (NDM-1) gene makes multiple pathogenic microorganisms resistant to all known β-lactam antibiotics. The rapid emergence of NDM-1 has been linked to mobile plasmids that move between different strains resulting in world-wide dissemination. Biochemical studies revealed that NDM-1 is capable of efficiently hydrolyzing a wide range of β-lactams, including many carbapenems considered as “last resort” antibiotics. The crystal structures of metal-free apo- and monozinc forms of NDM-1 presented here revealed an enlarged and flexible active site of class B1 metallo-β-lactamase. This site is capable of accommodating many β-lactam substrates by having many of the catalytic residues on flexible loops, which explains the observed extended spectrum activity of this zinc dependent β-lactamase. Indeed, five loops contribute “keg” residues in the active site including side chains involved in metal binding. Loop 1 in particular, shows conformational flexibility, apparently related to the acceptance and positioning of substrates for cleavage by a zinc-activated water molecule.
机译:新德里的Metallo-β-内酰胺酶(NDM-1)基因使多种致病微生物对所有已知的β-内酰胺类抗生素产生抗性。 NDM-1的迅速出现已与在不同菌株之间移动的移动质粒相关联,从而在世界范围内传播。生化研究表明,NDM-1能够有效水解多种β-内酰胺,包括许多被认为是“最后手段”的碳青霉烯类抗生素。此处显示的无金属载脂和单锌形式的NDM-1的晶体结构揭示了B1类金属-β-内酰胺酶的活性位点扩大了。通过在柔性环上具有许多催化残基,该位点能够容纳许多β-内酰胺底物,这解释了该锌依赖性β-内酰胺酶观察到的扩展光谱活性。实际上,五个环在活性位点贡献了“ keg”残基,包括参与金属结合的侧链。特别地,环1显示构象柔性,显然与接受锌活化的水分子裂解的底物的接受和定位有关。

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