一氧化碳上的生命:深红红螺菌镍铁硫一氧化碳脱氢酶的X射线结构

Life on carbon monoxide: X-ray structure of Rhodospirillum rubrum Ni-Fe-S carbon monoxide dehydrogenase.

作者信息

Drennan C L, Heo J, Sintchak M D, Schreiter E, Ludden P W

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Proc Natl Acad Sci U S A. 2001 Oct 9;98(21):11973-8. doi: 10.1073/pnas.211429998. Epub 2001 Oct 2.

Abstract

A crystal structure of the anaerobic Ni-Fe-S carbon monoxide dehydrogenase (CODH) from Rhodospirillum rubrum has been determined to 2.8-A resolution. The CODH family, for which the R. rubrum enzyme is the prototype, catalyzes the biological oxidation of CO at an unusual Ni-Fe-S cluster called the C-cluster. The Ni-Fe-S C-cluster contains a mononuclear site and a four-metal cubane. Surprisingly, anomalous dispersion data suggest that the mononuclear site contains Fe and not Ni, and the four-metal cubane has the form [NiFe(3)S(4)] and not [Fe(4)S(4)]. The mononuclear site and the four-metal cluster are bridged by means of Cys(531) and one of the sulfides of the cube. CODH is organized as a dimer with a previously unidentified [Fe(4)S(4)] cluster bridging the two subunits. Each monomer is comprised of three domains: a helical domain at the N terminus, an alpha/beta (Rossmann-like) domain in the middle, and an alpha/beta (Rossmann-like) domain at the C terminus. The helical domain contributes ligands to the bridging [Fe(4)S(4)] cluster and another [Fe(4)S(4)] cluster, the B-cluster, which is involved in electron transfer. The two Rossmann domains contribute ligands to the active site C-cluster. This x-ray structure provides insight into the mechanism of biological CO oxidation and has broader significance for the roles of Ni and Fe in biological systems.

摘要

已确定来自红螺菌的厌氧镍铁硫一氧化碳脱氢酶(CODH)的晶体结构,分辨率为2.8埃。以红螺菌酶为原型的CODH家族在一个名为C簇的特殊镍铁硫簇上催化CO的生物氧化。镍铁硫C簇包含一个单核位点和一个四金属立方烷。令人惊讶的是,反常散射数据表明单核位点含有的是铁而非镍,且四金属立方烷的形式为[NiFe(3)S(4)]而非[Fe(4)S(4)]。单核位点和四金属簇通过半胱氨酸531和立方烷的一个硫化物相连。CODH以二聚体形式存在,有一个先前未鉴定的[Fe(4)S(4)]簇连接两个亚基。每个单体由三个结构域组成:N端的螺旋结构域、中间的α/β(类罗斯曼)结构域和C端的α/β(类罗斯曼)结构域。螺旋结构域为连接的[Fe(4)S(4)]簇和另一个参与电子传递的[Fe(4)S(4)]簇(B簇)提供配体。两个罗斯曼结构域为活性位点C簇提供配体。这种X射线结构为生物CO氧化机制提供了深入了解,并且对镍和铁在生物系统中的作用具有更广泛的意义。

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