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琥珀酸脱氢酶的磁圆二色性研究。重组活性酶中[2Fe-2S]、[3Fe-xS]和[4Fe-4S]中心的证据。

Magnetic circular dichroism studies of succinate dehydrogenase. Evidence for [2Fe-2S], [3Fe-xS], and [4Fe-4S] centers in reconstitutively active enzyme.

作者信息

Johnson M K, Morningstar J E, Bennett D E, Ackrell B A, Kearney E B

出版信息

J Biol Chem. 1985 Jun 25;260(12):7368-78.

PMID:2987254
Abstract

Reconstitutively active and inactive succinate dehydrogenase have been investigated by low temperature magnetic circular dichroism (MCD) and EPR spectroscopy and room temperature CD and absorption spectroscopy. Reconstitutively active succinate dehydrogenase is found to contain three spectroscopically distinct Fe-S clusters: S1, S2, and S3. In agreement with previous studies, MCD and CD spectroscopy confirm that center S1 is a succinate-reducible [2Fe-2S]2+,1+ center. The MCD characteristics of center S2 identify it as a dithionite-reducible [4Fe-4S]2+,1+ similar to those in bacterial ferredoxins. EPR power saturation studies and the weakness of the EPR signal from reduced S2 indicate that there is a weak magnetic interaction between centers S1 and S2 in their paramagnetic, S = 1/2, reduced states. Center S3 is identified both by the form of the MCD spectrum and the characteristic magnetization behavior as a reduced [3Fe-xS] center in both succinate- and dithionite-reduced reconstitutively active succinate dehydrogenase. Arguments are presented in favor of centers S2 and S3 being separate centers rather than interconversion products of the same cluster. Reconstitutively inactive succinate dehydrogenase is found to be deficient in center S3. These results resolve many of the controversies concerning the Fe-S cluster content of succinate dehydrogenase and reconcile published EPR data with analytical and core extrusion studies. Moreover, they indicate that center S3 is a necessary requirement for reconstitutive activity and suggest that it is able to sustain ubiquinone reductase activity as a [3Fe-xS] center.

摘要

通过低温磁圆二色性(MCD)和电子顺磁共振(EPR)光谱以及室温圆二色性和吸收光谱对重组活性和无活性琥珀酸脱氢酶进行了研究。发现重组活性琥珀酸脱氢酶含有三个光谱上不同的铁硫簇:S1、S2和S3。与先前的研究一致,MCD和圆二色性光谱证实中心S1是一个可被琥珀酸还原的[2Fe-2S]2 +,1 +中心。中心S2的MCD特征表明它是一个可被连二亚硫酸盐还原的[4Fe-4S]2 +,1 +,类似于细菌铁氧化还原蛋白中的那些。EPR功率饱和研究以及来自还原态S2的EPR信号的微弱表明,在顺磁态S = 1/2的还原态下,中心S1和S2之间存在弱磁相互作用。中心S3通过MCD光谱的形式和特征磁化行为在琥珀酸和连二亚硫酸盐还原的重组活性琥珀酸脱氢酶中均被鉴定为还原的[3Fe-xS]中心。提出了支持中心S2和S3是独立中心而非同一簇的相互转化产物的论据。发现重组无活性琥珀酸脱氢酶缺乏中心S3。这些结果解决了许多关于琥珀酸脱氢酶铁硫簇含量的争议,并使已发表的EPR数据与分析和核心挤出研究相协调。此外,它们表明中心S3是重组活性的必要条件,并表明它能够作为[3Fe-xS]中心维持泛醌还原酶活性。

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