Department of Chemistry and Biochemistry, 160 Hughes Hall, Miami University, Oxford, Ohio 45056, USA.
Biochemistry. 2012 May 8;51(18):3839-47. doi: 10.1021/bi300056y. Epub 2012 Apr 25.
In an effort to biochemically characterize metallo-β-lactamase NDM-1, we cloned, overexpressed, purified, and characterized several maltose binding protein (MBP)-NDM-1 fusion proteins with different N-termini (full-length, Δ6, Δ21, and Δ36). All MBP-NDM-1 fusion proteins were soluble; however, only one, MBP-NDM-1Δ36, exhibited high activity and bound 2 equiv of Zn(II). Thrombin cleavage of this fusion protein resulted in the truncated NDM-1Δ36 variant, which exhibited a k(cat) of 16 s(-1) and a K(m) of 1.1 μM when using nitrocefin as a substrate, bound 2 equiv of Zn(II), and was monomeric in solution. Extended X-ray absorption fine structure studies of the NDM-1Δ36 variant indicate the average metal binding site for Zn(II) in this variant consists of four N/O donors (two of which are histidines) and 0.5 sulfur donor per zinc, with a Zn-Zn distance of 3.38 Å. This metal binding site is very similar to those of other metallo-β-lactamases that belong to the B1 subclass. Pre-steady-state kinetic studies using nitrocefin and chromacef and the NDM-1Δ36 variant indicate that the enzyme utilizes a kinetic mechanism similar to that used by metallo-β-lactamases L1 and CcrA, in which a reactive nitrogen anion is stabilized and its protonation is rate-limiting. While they are very different in terms of amino acid sequence, these studies demonstrate that NDM-1 is structurally and mechanistically very similar to metallo-β-lactamase CcrA.
为了对金属β-内酰胺酶 NDM-1 进行生化表征,我们克隆、过表达、纯化并表征了几种具有不同 N 末端(全长、Δ6、Δ21 和 Δ36)的麦芽糖结合蛋白 (MBP)-NDM-1 融合蛋白。所有 MBP-NDM-1 融合蛋白均为可溶性;然而,只有一种 MBP-NDM-1Δ36 表现出高活性并结合了 2 当量的 Zn(II)。该融合蛋白经凝血酶切割后得到截短的 NDM-1Δ36 变体,该变体在以硝噻吩作为底物时表现出 16 s(-1)的 k(cat)和 1.1 μM 的 K(m),结合了 2 当量的 Zn(II),并且在溶液中为单体。NDM-1Δ36 变体的扩展 X 射线吸收精细结构研究表明,该变体中 Zn(II)的平均金属结合位点由四个 N/O 供体(其中两个是组氨酸)和 0.5 个硫供体组成,锌-锌距离为 3.38 Å。这个金属结合位点与属于 B1 亚类的其他金属β-内酰胺酶非常相似。使用硝噻吩和色头孢菌素和 NDM-1Δ36 变体进行的预稳态动力学研究表明,该酶利用类似于金属β-内酰胺酶 L1 和 CcrA 所使用的动力学机制,其中反应性氮阴离子被稳定,其质子化是限速步骤。虽然它们在氨基酸序列上有很大的不同,但这些研究表明 NDM-1 在结构和机制上与金属β-内酰胺酶 CcrA 非常相似。