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可变脱硫球菌的异化亚硫酸盐还原酶是一种含去铁红蛋白的酶,其含有未偶联的金属化的丝氨酸血红素和S = 9/2的铁硫簇。

The dissimilatory sulfite reductase from Desulfosarcina variabilis is a desulforubidin containing uncoupled metalated sirohemes and S = 9/2 iron-sulfur clusters.

作者信息

Arendsen A F, Verhagen M F, Wolbert R B, Pierik A J, Stams A J, Jetten M S, Hagen W R

机构信息

Department of Biochemistry, Wageningen Agricultural University, The Netherlands.

出版信息

Biochemistry. 1993 Oct 5;32(39):10323-30. doi: 10.1021/bi00090a007.

Abstract

The active site of Escherichia coli NADPH-sulfite reductase has previously been modeled as a siroheme with its iron bridged to a nearby iron-sulfur cubane, resulting in antiferromagnetic exchange coupling between all iron atoms. The model has been suggested to hold also for other sulfite reductases and nitrite reductases. We have recently challenged the generality of the model with the finding that the EPR of Fe/S in dissimilatory sulfite reductase (desulfoviridin) from Desulfovibrio vulgaris indicates that an S = 9/2 system is not subject to coupling. Siroheme in desulfoviridin is to a large extent demetalated, and therefore coupling is physically impossible. We have now studied examples from a second class of dissimilatory sulfite reductases, desulforubidins, which have their siroporphyrins fully metalated. Desulforubidin from Desulfosarcina variabilis is a 208-kDa alpha 2 beta 2 gamma 2 hexamer. The alpha- and beta-subunits are immunologically active with antibodies raised against the corresponding subunits from D. vulgaris desulfoviridin, whereas the gamma-subunit is not. The desulforubidin contains two fully metalated sirohemes and a total of approximately 15 Fe and approximately 19 S2-. Quantification of high-spin plus low-spin heme EPR signals accounts for all sirohydrochlorin. The frequency-independent (9-35 GHz) effective perpendicular g-values of the high-spin S = 5/2 siroheme (6.33, 5.19) point to quantum mixing with an excited (approximately 770 cm-1) S = 3/2 multiplet. Similar anomalous g-values are observed with sulfite reductases from Desulfovibrio baarsii and Desulfotomaculum acetoxidans. The D. variabilis enzyme exhibits very approximately stoichiometric S = 9/2 EPR (g = 16).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

此前,大肠杆菌NADPH-亚硫酸盐还原酶的活性位点被模拟为一个与附近铁硫立方烷的铁桥连的西罗血红素,导致所有铁原子之间存在反铁磁交换耦合。有人提出该模型也适用于其他亚硫酸盐还原酶和亚硝酸盐还原酶。最近,我们对该模型的普遍性提出了质疑,因为从普通脱硫弧菌中分离出的异化亚硫酸盐还原酶(脱硫绿素)的Fe/S的电子顺磁共振(EPR)表明,一个S = 9/2体系不受耦合作用影响。脱硫绿素中的西罗血红素在很大程度上脱金属了,因此耦合在物理上是不可能的。我们现在研究了第二类异化亚硫酸盐还原酶——脱硫红菌素中的一些例子,它们的西罗卟啉是完全金属化的。来自可变脱硫球菌的脱硫红菌素是一种208 kDa的α2β2γ2六聚体。α亚基和β亚基与用针对普通脱硫弧菌脱硫绿素相应亚基产生的抗体具有免疫活性,而γ亚基则没有。脱硫红菌素包含两个完全金属化的西罗血红素,总共约有15个铁和约19个S2-。高自旋加低自旋血红素EPR信号的定量分析涵盖了所有的西罗氢氯素。高自旋S = 5/2西罗血红素(6.·33,5.·19)的频率无关(9 - 35 GHz)有效垂直g值表明与一个激发的(约770 cm-1)S = 3/2多重态存在量子混合。在巴氏脱硫弧菌和乙酸氧化脱硫肠状菌的亚硫酸盐还原酶中也观察到了类似的异常g值。可变脱硫球菌的酶表现出非常近似化学计量比的S = 9/·2 EPR(g = 16)。(摘要截断于250字)

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