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脱氮副球菌呼吸链中NADH:泛醌氧化还原酶片段中铁硫簇的电子顺磁共振表征

EPR characterization of the iron-sulfur clusters in the NADH: ubiquinone oxidoreductase segment of the respiratory chain in Paracoccus denitrificans.

作者信息

Meinhardt S W, Kula T, Yagi T, Lillich T, Ohnishi T

出版信息

J Biol Chem. 1987 Jul 5;262(19):9147-53.

PMID:3036849
Abstract

The physicochemical properties of the iron-sulfur clusters present in the NADH:ubiquinone oxidoreductase of Paracoccus denitrificans have been examined in the cytoplasmic membrane particles by redox potentiometry and EPR spectroscopy. Analogous to the iron-sulfur clusters present in the mitochondrial NADH: ubiquinone oxidoreductase, we have found two binuclear and three tetranuclear EPR detectable iron-sulfur clusters, namely, N-1a, N-1b, N-2, N-3, and N-4. In the bacterial system, the two binuclear clusters differ in line shape and in Em values; the cluster with more rhombic symmetry (gx,y,z = 1.918, 1.937, 2.029) has the Em7.0 value of -150 while the almost axial one (gx,y,z = 1.929, 1.941, 2.019) has Em7.0 of -270 mV. The Em of the former cluster is pH dependent (-60 mV/pH) as in the case of mammalian N-1a while the latter is pH independent as is the mammalian cluster N-1b. The pH-dependent P. denitrificans [2Fe-2S] cluster, which we have labeled N-1a, has an Em7.0 as high as that of N-2, in contrast to the mammalian N-1a. Thus N-1a is reducible with a physiological reductant, NADH in this bacterial system. The Em of the cluster N-2 is also pH dependent (Em7.0 = -130 mV) with a pK value near 7.7. The Em values of all other clusters exhibit no pH dependence as in the case of their mammalian counterparts. We have found that the cluster N-1a is the most labile component among the five iron-sulfur clusters and may give rise to variable relative spin concentrations and extremely low Em values due to the facile modifications of the microenvironment of the cluster. The P. denitrificans NADH:ubiquinone oxidoreductase provides a unique and useful site I model system where redox composition is similar to the mitochondrial enzyme but with fewer numbers of polypeptides (Yagi, T. (1986) Arch. Biochem. Biophys. 250, 302-311).

摘要

通过氧化还原电位测定法和电子顺磁共振光谱法,对反硝化副球菌NADH:泛醌氧化还原酶中存在的铁硫簇的物理化学性质进行了研究。与线粒体NADH:泛醌氧化还原酶中存在的铁硫簇类似,我们发现了两个双核和三个四核的可通过电子顺磁共振检测到的铁硫簇,即N-1a、N-1b、N-2、N-3和N-4。在细菌系统中,这两个双核簇的线形和Em值不同;具有更多菱形对称性的簇(gx,y,z = 1.918, 1.937, 2.029)的Em7.0值为-150,而几乎呈轴向的簇(gx,y,z = 1.929, 1.941, 2.019)的Em7.0为-270 mV。前一个簇的Em值与哺乳动物的N-1a一样依赖于pH(-60 mV/pH),而后一个簇与哺乳动物的簇N-1b一样不依赖于pH。与哺乳动物的N-1a不同,我们标记为N-1a的依赖于pH的反硝化副球菌[2Fe-2S]簇的Em7.0与N-2一样高。因此,在这个细菌系统中,N-1a可以被生理还原剂NADH还原。簇N-2的Em值也依赖于pH(Em7.0 = -130 mV),pK值接近7.7。所有其他簇的Em值与它们的哺乳动物对应物一样不表现出pH依赖性。我们发现簇N-1a是五个铁硫簇中最不稳定的成分,由于簇微环境的容易修饰,可能会产生可变的相对自旋浓度和极低的Em值。反硝化副球菌NADH:泛醌氧化还原酶提供了一个独特且有用的位点I模型系统,其氧化还原组成与线粒体酶相似,但多肽数量较少(八木,T.(1986年)《生物化学与生物物理学报》250,302 - 311)。

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