Silva P J, de Castro B, Hagen W R
Wageningen University, Laboratory of Biochemistry, The Netherlands.
J Biol Inorg Chem. 1999 Jun;4(3):284-91. doi: 10.1007/s007750050314.
The sulfhydrogenase complex of Pyrococcus furiosus is an alpha beta gamma delta heterotetramer with both hydrogenase activity (borne by the alpha delta subunits) and sulfur reductase activity (carried by the beta gamma subunits). The beta-subunit contains at least two [4Fe-4S] cubanes and the gamma-subunit contains one [2Fe-2S] cluster and one FAD molecule. The delta-subunit contains three [4Fe-4S] cubanes and the alpha-subunit carries the NiFe dinuclear center. Only three Fe/S signals are observed in EPR-monitored reduction by dithionite, NADPH, or internal substrate upon heating. All other clusters presumably have reduction potentials well below that of the H+/H2 couple. Heat-induced reduction by internal substrate allows, for the first time, EPR monitoring of the NiFe center in a hyperthermophilic hydrogenase, which passes through a number of states, some of which are similar to states previously defined for mesophilic hydrogenases. The complexity of the observed transitions reflects a combination of temperature-dependent activation and temperature-dependent reduction potentials.
激烈火球菌的硫氢酶复合体是一种αβγδ异源四聚体,兼具氢化酶活性(由αδ亚基承担)和硫还原酶活性(由βγ亚基承担)。β亚基至少含有两个[4Fe-4S]立方烷,γ亚基含有一个[2Fe-2S]簇和一个FAD分子。δ亚基含有三个[4Fe-4S]立方烷,α亚基携带NiFe双核中心。在加热时,用连二亚硫酸盐、NADPH或内源性底物进行EPR监测还原过程中,仅观察到三个Fe/S信号。据推测,所有其他簇的还原电位远低于H⁺/H₂电对的还原电位。内源性底物引起的热诱导还原首次实现了对嗜热氢化酶中NiFe中心的EPR监测,该中心会经历多个状态,其中一些状态与先前为嗜温氢化酶定义的状态相似。观察到的转变的复杂性反映了温度依赖性激活和温度依赖性还原电位的综合作用。