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巴氏芽孢梭菌中氢化酶I和氢化酶II的磁圆二色性和电子顺磁共振研究

Magnetic circular dichroism and electron paramagnetic resonance studies of hydrogenases I and II from Clostridium pasteurianum.

作者信息

Zambrano I C, Kowal A T, Mortenson L E, Adams M W, Johnson M K

机构信息

School of Chemical Sciences, University of Georgia, Athens 30602.

出版信息

J Biol Chem. 1989 Dec 15;264(35):20974-83.

PMID:2556390
Abstract

The two iron-only hydrogenases (I and II) from Clostridium pasteurianum have been investigated by variable temperature magnetic circular dichroism (MCD) and electron paramagnetic resonance (EPR) spectroscopies. Samples were studied both reduced with dithionite under an atmosphere of H2 and after oxidation with thionine. The results are consistent with four and two [4Fe-4S]1+,2+ (F)-clusters in hydrogenases I and II, respectively. All four F-clusters are reduced and paramagnetic in reduced hydrogenase I, with up to one exhibiting an S = 3/2 ground state and the remainder having conventional S = 1/2 ground states. Both F-clusters have S = 1/2 ground states in reduced hydrogenase II; however, one appears to be only partially reduced under the conditions used for reduction. MCD studies of the oxidized enzymes show no temperature-dependent features in the visible region which can be attributed to the EPR-active S = 1/2 hydrogen-activating cluster, suggesting predominantly oxygen and nitrogen coordination for the iron atoms of this center. However, temperature-dependent MCD transitions arising from a hitherto undetected S greater than 1/2 Fe-S clusters are apparent in both oxidized hydrogenases. Detailed EPR studies of oxidized hydrogenase I revealed resonances from an S = 3/2 species, however, spin quantitation reveals this to be a trace component that is unlikely to be responsible for the observed low temperature MCD spectrum. The nature and origin of these S greater than 1/2 Fe-S clusters are discussed in light of the available spectroscopic data for these and other iron-only hydrogenases.

摘要

利用变温磁圆二色光谱法(MCD)和电子顺磁共振光谱法(EPR)对来自巴斯德梭菌的两种仅含铁的氢化酶(I和II)进行了研究。在H₂气氛下用连二亚硫酸盐还原样品以及用亚甲蓝氧化后,对样品进行了研究。结果表明,氢化酶I和II中分别有四个和两个[4Fe-4S]1+、2+(F)簇。在还原的氢化酶I中,所有四个F簇均被还原且具有顺磁性,其中最多有一个呈现S = 3/2基态,其余的具有传统的S = 1/2基态。在还原的氢化酶II中,两个F簇均具有S = 1/2基态;然而,在用于还原的条件下,其中一个似乎仅被部分还原。对氧化酶的MCD研究表明,在可见光区域没有可归因于具有EPR活性的S = 1/2氢活化簇的温度依赖性特征,这表明该中心铁原子主要是氧和氮配位。然而,在两种氧化的氢化酶中,均出现了由迄今未检测到的S大于1/2的Fe-S簇引起的温度依赖性MCD跃迁。对氧化的氢化酶I的详细EPR研究揭示了来自S = 3/2物种的共振,然而,自旋定量表明这是一种痕量成分,不太可能是观察到的低温MCD光谱的原因。根据这些以及其他仅含铁的氢化酶的现有光谱数据,讨论了这些S大于½的Fe-S簇的性质和起源。

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