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SlyD在大肠杆菌氢化酶生物合成途径中的作用。

A role for SlyD in the Escherichia coli hydrogenase biosynthetic pathway.

作者信息

Zhang Jie Wei, Butland Gareth, Greenblatt Jack F, Emili Andrew, Zamble Deborah B

机构信息

Department of Chemistry, University of Toronto, Toronto, Ontario M5S 3H6, Canada.

出版信息

J Biol Chem. 2005 Feb 11;280(6):4360-6. doi: 10.1074/jbc.M411799200. Epub 2004 Nov 29.

Abstract

The [NiFe] centers at the active sites of the Escherichia coli hydrogenase enzymes are assembled by a team of accessory proteins that includes the products of the hyp genes. To determine whether any other proteins are involved in this process, the sequential peptide affinity system was used. The analysis of the proteins in a complex with HypB revealed the peptidyl-prolyl cis/trans-isomerase SlyD, a metal-binding protein that has not been previously linked to the hydrogenase biosynthetic pathway. The association between HypB and SlyD was confirmed by chemical cross-linking of purified proteins. Deletion of the slyD gene resulted in a marked reduction of the hydrogenase activity in cell extracts prepared from anaerobic cultures, and an in-gel assay was used to demonstrate diminished activities of both hydrogenase 1 and 2. Western analysis revealed a decrease in the final proteolytic processing of the hydrogenase 3 HycE protein, indicating that the metal center was not assembled properly. These deficiencies were all rescued by growth in medium containing excess nickel, but zinc did not have any phenotypic effect. Experiments with radioactive nickel demonstrated that less nickel accumulated in DeltaslyD cells compared with wild type, and overexpression of SlyD from an inducible promoter doubled the level of cellular nickel. These experiments demonstrate that SlyD has a role in the nickel insertion step of the hydrogenase maturation pathway, and the possible functions of SlyD are discussed.

摘要

大肠杆菌氢化酶活性位点处的[NiFe]中心由一组辅助蛋白组装而成,其中包括hyp基因的产物。为了确定是否有其他蛋白质参与这一过程,使用了连续肽亲和系统。对与HypB形成复合物的蛋白质进行分析,发现了肽基脯氨酰顺/反异构酶SlyD,这是一种金属结合蛋白,此前尚未与氢化酶生物合成途径相关联。通过纯化蛋白的化学交联证实了HypB与SlyD之间的关联。缺失slyD基因导致厌氧培养制备的细胞提取物中氢化酶活性显著降低,并且使用凝胶内测定法证明氢化酶1和2的活性均降低。蛋白质免疫印迹分析显示氢化酶3 HycE蛋白的最终蛋白水解加工减少,表明金属中心组装不当。在含有过量镍的培养基中生长可挽救所有这些缺陷,但锌没有任何表型效应。用放射性镍进行的实验表明,与野生型相比,DeltaslyD细胞中积累的镍更少,并且从诱导型启动子过表达SlyD可使细胞镍水平加倍。这些实验表明SlyD在氢化酶成熟途径的镍插入步骤中起作用,并讨论了SlyD的可能功能。

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