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氢酶结构及催化机理研究进展
引用本文:刘晶晶, 龙敏南,.氢酶结构及催化机理研究进展[J].生物工程学报,2005,21(3):348-353.
作者姓名:刘晶晶  龙敏南  
作者单位:厦门大学生命科学学院微生物与海洋药物研究所,厦门,361005
基金项目:国家自然科学基金资助项目 (No .3 0 2 70 3 2 8,3 0 470 3 95 ),国际科技合作重点项目 (No.2 0 0 2AA5 15 0 3 0 )~~
摘    要:氢酶是一类催化氢的氧化或质子还原的酶,它在微生物产氢过程中扮演着重要角色。根据氢酶所含的金属元素,可分为NiFe_氢酶、Fe-氢酶和不含金属元素的metal_free氢酶。大多数氢酶含有金属原子,它们参与氢酶活性中心和Fe_S]簇的形成。氢酶的活性中心直接催化氢的氧化与质子的还原,Fe_S]簇则参与氢酶催化过程中电子的传输。目前已有数种NiFe_氢酶和Fe_氢酶的X射线衍射晶体结构被阐明。根据metal_free氢酶的序列特征,推断其结构与NiFe_氢酶和Fe_氢酶之间存在较大差异。对氢酶活性中心和Fe_S]簇的深入研究,揭示了氢酶催化反应的机理。

关 键 词:氢酶    活性中心    结构特征    催化机理  
文章编号:1000-3061(2005)03-0348-06
修稿时间:2004年12月16

Recent Advances on the Structure and Catalytic Mechanism of Hydrogenase
LIU Jing-Jing,LONG Min-Nan.Recent Advances on the Structure and Catalytic Mechanism of Hydrogenase[J].Chinese Journal of Biotechnology,2005,21(3):348-353.
Authors:LIU Jing-Jing  LONG Min-Nan
Institution:Institute of Microbiology and Marine Medicine, School of Life Sciences, Xiamen University, Xiamen 361005, China.
Abstract:Hydrogenases are enzymes that catalyse the oxidation of hydrogen and the reduction of protons. It plays an important role in the process of biohydrogen production. According to the metal atoms within hydrogenase, it can be classified as NiFe-hydrogenase, Fe-hydrogenase and metal-free hydrogenase. The overwhelming majority of hydrogenases are metalloenzymes. The metal atoms are involved in the forming of active site and Fe-S] clusters. The active site directly catalyzes the reduction of protons and the oxidation of hydrogen. The Fe-S] clusters are involved in the transport of electrons between the H 2-activating site and the redox partners of hydrogenase. Presently, the crystal structures of NiFe-hydrogenase and Fe-hydrogenase from a few kinds of microorganism have been revealed. The metal-free hydrogenase, characterized by the absence of Fe-S] cluster and the presence of an iron-containing cofactor, shows a great diversity comparing with those of NiFe-hydrogenases and Fe-hydrogenases. Recent progress have also indicated the mechanisms of activation.
Keywords:hydrogenase    active site    structure property    catalytic mechanism
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