首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Electron Accepting Units of the Diheme Cytochrome c TsdA a Bifunctional Thiosulfate Dehydrogenase/Tetrathionate Reductase
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Electron Accepting Units of the Diheme Cytochrome c TsdA a Bifunctional Thiosulfate Dehydrogenase/Tetrathionate Reductase

机译:双功能细胞色素c TsdA的电子接受单元双功能硫代硫酸盐脱氢酶/四硫代硫酸盐还原酶

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摘要

The enzymes of the thiosulfate dehydrogenase (TsdA) family are wide-spread diheme c-type cytochromes. Here, redox carriers were studied mediating the flow of electrons arising from thiosulfate oxidation into respiratory or photosynthetic electron chains. In a number of organisms, including Thiomonas intermedia and Sideroxydans lithotrophicus, the tsdA gene is immediately preceded by tsdB encoding for another diheme cytochrome. Spectrophotometric experiments in combination with enzymatic assays in solution showed that TsdB acts as an effective electron acceptor of TsdA in vitro when TsdA and TsdB originate from the same source organism. Although TsdA covers a range from −300 to +150 mV, TsdB is redox active between −100 and +300 mV, thus enabling electron transfer between these hemoproteins. The three-dimensional structure of the TsdB-TsdA fusion protein from the purple sulfur bacterium Marichromatium purpuratum was solved by X-ray crystallography to 2.75 Å resolution providing insights into internal electron transfer. In the oxidized state, this tetraheme cytochrome c contains three hemes with axial His/Met ligation, whereas heme 3 exhibits the His/Cys coordination typical for TsdA active sites. Interestingly, thiosulfate is covalently bound to Cys330 on heme 3. In several bacteria, including Allochromatium vinosum, TsdB is not present, precluding a general and essential role for electron flow. Both AvTsdA and the MpTsdBA fusion react efficiently in vitro with high potential iron-sulfur protein from A. vinosum (Em +350 mV). High potential iron-sulfur protein not only acts as direct electron donor to the reaction center in anoxygenic phototrophs but can also be involved in aerobic respiratory chains.
机译:硫代硫酸盐脱氢酶(TsdA)家族的酶是广泛的二血红素c型细胞色素。在这里,对氧化还原载体进行了研究,该载体介导了硫代硫酸盐氧化产生的电子流进入呼吸或光合电子链。在许多生物中,包括中间型Thiomonas intermedia和Sideroxydans lithotrophicus,tsdA基因紧随tsdB编码另一种双血红素细胞色素。分光光度法结合溶液中的酶促测定表明,当TsdA和TsdB源自同一来源生物时,TsdB在体外可作为TsdA的有效电子受体。尽管TsdA的范围为-300至+150 mV,但TsdB在-100至+300 mV之间具有氧化还原活性,因此可在这些血红蛋白之间进行电子转移。紫色硫磺细菌紫细菌Marichromatium purpuratum的TsdB-TsdA融合蛋白的三维结构通过X射线晶体学解析为2.75Å分辨率,可深入了解内部电子转移。在氧化状态下,该四血红素细胞色素c包含三个具有轴向His / Met连接的血红素,而血红素3表现出TsdA活性位点典型的His / Cys配位。有趣的是,硫代硫酸盐与血红素3上的Cys 330 共价结合。在包括异形变色菌在内的几种细菌中,不存在TsdB,这排除了电子流动的基本作用。 AvTsdA和MpTsdBA融合体在体外均能与来自A. vinosum(Em +350 mV)的高潜力铁硫蛋白有效反应。高电位的铁硫蛋白不仅充当产氧光养菌中反应中心的直接电子供体,而且还可能参与有氧呼吸链。

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