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来自大肠杆菌的氢化酶成熟内肽酶HYBD的晶体结构。

Crystal structure of the hydrogenase maturating endopeptidase HYBD from Escherichia coli.

作者信息

Fritsche E, Paschos A, Beisel H G, Böck A, Huber R

机构信息

Max-Planck-Institut für Biochemia, Abteilung für Strukturforschung, Martinsried, D-82152, Germany.

出版信息

J Mol Biol. 1999 May 21;288(5):989-98. doi: 10.1006/jmbi.1999.2719.

Abstract

The maturation of [NiFe] hydrogenases includes formation of the nickel metallocenter, proteolytic processing of the metal center carrying large subunit, and its assembling with other hydrogenase subunits. The hydrogenase maturating enzyme HYBD from Escherichia coli, a protease of molecular mass 17.5 kDa, specifically cleaves off a 15 amino acid peptide from the C terminus of the precursor of the large subunit of hydrogenase 2 in a nickel-dependent manner. Here we report the crystal structure of HYBD at 2.2 A resolution. It consists of a twisted five-stranded beta-sheet surrounded by four and three helices, respectively, on each side. A cadmium ion from the crystallization buffer binds to the proposed nickel-binding site and is penta-coordinated by Glu16, Asp62, His93, and a water molecule in a pseudo-tetragonal arrangement. HYBD is topologically related to members of the metzincins superfamily of zinc endoproteinases, sharing the central beta-sheet and three helices. In contrast to the metzincins, the metal-binding site of HYBD is localized at the C-terminal end of the beta-sheet. Three helical insertions unique to HYBD pack against one side of the sheet, build up the active site cleft, and provide His93 as ligand to the metal. From this structure, we derive molecular clues into how the protease HYBD is involved in the hydrogenase maturation process.

摘要

[NiFe]氢化酶的成熟过程包括镍金属中心的形成、携带大亚基的金属中心的蛋白水解加工以及它与其他氢化酶亚基的组装。来自大肠杆菌的氢化酶成熟酶HYBD是一种分子量为17.5 kDa的蛋白酶,它以镍依赖的方式从氢化酶2大亚基前体的C末端特异性切割掉一个15个氨基酸的肽段。在此,我们报道了分辨率为2.2 Å的HYBD晶体结构。它由一个扭曲的五链β折叠组成,两侧分别被四个和三个螺旋包围。来自结晶缓冲液的镉离子结合到推测的镍结合位点,并通过Glu16、Asp62、His93和一个水分子以假四方排列进行五配位。HYBD在拓扑结构上与锌内肽酶的金属锌蛋白酶超家族成员相关,共享中央β折叠和三个螺旋。与金属锌蛋白酶不同,HYBD 的金属结合位点位于β折叠的C末端。HYBD特有的三个螺旋插入片段堆积在折叠的一侧,形成活性位点裂隙,并提供His93作为金属的配体。基于此结构,我们获得了关于蛋白酶HYBD如何参与氢化酶成熟过程的分子线索。

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