Structural and functional studies of a metallo-β-lactamase unveil a new type of structurally encoded nickel-containing heterodinuclear site.

Hwajung Choi, Hee Jung Kim, Atsushi Matsuura, Bunzo Mikami, Hye Jin Yoon, Hyung Ho Lee
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引用次数: 3

Abstract

The selection of correct metal ions with high fidelity against competing cellular cations is crucial for the function of many metalloenzymes; however, the understanding of the principles that govern metal selectivity is still incomplete. In this study, the crystal structure of the Tm1162 protein from Thermotoga maritima, a metallo-β-lactamase, is reported. Several crystal structures of wild-type Tm1162 and its mutants were solved. Homologues of Tm1162 are widely distributed in bacteria and archaea, including several human pathogens. The monomer possesses an αβ/βα fold, with the core β-strands having the β-sheet sandwich structure common to the metallo-β-lactamase superfamily. Tm1162 exists as a trimer in the crystal and this trimeric unit is likely to be present in solution. In the trimer, three active sites reside at the interface between subunits, suggesting that the oligomeric assembly is crucial for catalysis. A new type of structurally encoded heterodinuclear site has been identified by confirming the identity of nickel-containing heteronuclear sites in Tm1162 via X-ray absorption spectroscopy and anomalous difference Fourier maps. The second coordination sphere, including His8 and Glu73, maintains the side-chain orientations of histidines and stabilizes the metal-binding site. Nickel coordination was crucial for the oligomerization of Tm1162. The nickel-dependent and manganese-dependent β-lactamase and phosphodiesterase activities of Tm1162 have also been characterized.
金属β-内酰胺酶的结构和功能研究揭示了一种新型结构编码的含镍异双核位点。
在竞争的细胞阳离子中选择正确的高保真金属离子对许多金属酶的功能至关重要;然而,对控制金属选择性的原理的理解仍然不完整。本文报道了金属β-内酰胺酶Thermotoga maritima的Tm1162蛋白的晶体结构。分析了野生型Tm1162及其突变体的晶体结构。Tm1162的同源物广泛分布于细菌和古细菌中,包括几种人类病原体。该单体具有αβ/βα折叠,核心β-链具有金属β-内酰胺酶超家族常见的β-片夹心结构。Tm1162以三聚体形式存在于晶体中,这种三聚体很可能存在于溶液中。在三聚体中,三个活性位点位于亚基之间的界面,表明低聚物组装对催化至关重要。利用x射线吸收光谱和异常差分傅立叶图证实了Tm1162中含镍异核位点的身份,从而鉴定出一种新型的结构编码异核位点。第二个配位球,包括His8和Glu73,维持组氨酸的侧链取向并稳定金属结合位点。镍配位是Tm1162寡聚的关键。对Tm1162的镍依赖性和锰依赖性β-内酰胺酶和磷酸二酯酶活性也进行了表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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