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鉴定和结构的一种新型古菌 HypB [NiFe]氢化酶成熟。

Identification and structure of a novel archaeal HypB for [NiFe] hydrogenase maturation.

机构信息

Department of Chemistry, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.

出版信息

J Mol Biol. 2013 May 27;425(10):1627-40. doi: 10.1016/j.jmb.2013.02.004. Epub 2013 Feb 8.

Abstract

HypB (metal-binding GTPase) and HypA (nickel metallochaperone) are required for nickel insertion into [NiFe] hydrogenase. However, the HypB homolog proteins are not found in some archaeal species including Thermococcales. In this article, we identify a novel archaeal Mrp/MinD family ATPase-type HypB from Thermococcus kodakarensis (Tk-mmHypB) and determine its crystal structure. The mmhypB gene is conserved among species lacking the hypB gene and is located adjacent to the hypA gene on their genome. Deletion of the mmhypB gene leads to a significant reduction in hydrogen-dependent growth of T. kodakarensis, which is restored by nickel supplementation. The monomer structure of Tk-mmHypB is similar to those of the Mrp/MinD family ATPases. The ADP molecules are tightly bound to the protein. Isothermal titration calorimetry shows that Tk-mmHypB binds ATP with a K(d) value of 84 nM. ADP binds more tightly than does ATP, with a K(d) value of 15 nM. The closed Tk-mmHypB dimer in the crystallographic asymmetric unit is consistent with the ATP-hydrolysis-deficient dimer of the Mrp/MinD family Soj/MinD proteins. Structural comparisons with these proteins suggest the ATP-binding dependent conformational change and rearrangement of the Tk-mmHypB dimer. These observations imply that the nickel insertion process during the [NiFe] hydrogenase maturation is performed by HypA, mmHypB, and a nucleotide exchange factor in these archaea.

摘要

HypB(金属结合 GTPase)和 HypA(镍金属伴侣蛋白)是镍插入 [NiFe]氢化酶所必需的。然而,一些古菌物种(包括 Thermococcales)中没有发现 HypB 同源蛋白。在本文中,我们从 Thermococcus kodakarensis(Tk-mmHypB)中鉴定出一种新型古菌 Mrp/MinD 家族 ATPase 型 HypB,并确定了其晶体结构。mmhypB 基因在缺乏 hypB 基因的物种中保守,并位于其基因组上 hypA 基因的旁边。mmhypB 基因的缺失导致 Thermococcus kodakarensis 对氢气的依赖性生长显著减少,而镍的补充可以恢复这种生长。Tk-mmHypB 的单体结构与 Mrp/MinD 家族 ATP 酶相似。ADP 分子与蛋白质紧密结合。等温滴定量热法表明,Tk-mmHypB 与 ATP 的结合 K(d)值为 84 nM。ADP 的结合比 ATP 更紧密,K(d)值为 15 nM。晶体学不对称单位中的封闭 Tk-mmHypB 二聚体与 Mrp/MinD 家族 Soj/MinD 蛋白的 ATP 水解缺陷二聚体一致。与这些蛋白质的结构比较表明,Tk-mmHypB 二聚体的 ATP 结合依赖性构象变化和重排。这些观察结果表明,在这些古菌中,镍插入过程是由 HypA、mmHypB 和核苷酸交换因子完成的,用于 [NiFe]氢化酶成熟。

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