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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Connection between the membrane electron transport system and Hyn hydrogenase in the purple sulfur bacterium, Thiocapsa roseopersicina BBS
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Connection between the membrane electron transport system and Hyn hydrogenase in the purple sulfur bacterium, Thiocapsa roseopersicina BBS

机译:紫色硫细菌Thiocapsa roseopersicina BBS中的膜电子传输系统与Hyn氢化酶之间的联系

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Thiocapsa. roseopersicina BBS has four active [NiFe] hydrogenases, providing an excellent opportunity to examine their metabolic linkages to the cellular redox processes. Hyn is a periplasmic membrane-associated hydrogenase harboring two additional electron transfer subunits: Isp1 is a transmembrane protein, while Isp2 is located on the cytoplasmic side of the membrane. In this work, the connection of HynSL to various electron transport pathways is studied. During photoautotrophic growth, electrons, generated from the oxidation of thiosulfate and sulfur, are donated to the photosynthetic electron transport chain via cytochromes. Electrons formed from thiosulfate and sulfur oxidation might also be also used for Hyn-dependent hydrogen evolution which was shown to be light and proton motive force driven. Hyn-linked hydrogen uptake can be promoted by both sulfur and nitrate. The electron flow from/to HynSL requires the presence of Isp2 in both directions. Hydrogenase-linked sulfur reduction could be inhibited by a QB site competitive inhibitor, terbutryne, suggesting a redox coupling between the Hyn hydrogenase and the photosynthetic electron transport chain. Based on these findings, redox linkages of Hyn hydrogenase are modeled.
机译:硫卡波萨。 roseopersicina BBS具有四种活性[NiFe]氢化酶,提供了极好的机会来检查它们与细胞氧化还原过程的代谢联系。 Hyn是带有两个额外电子转移亚基的周质膜相关氢化酶:Isp1是跨膜蛋白,而Isp2位于膜的细胞质侧。在这项工作中,研究了HynSL与各种电子传输途径的联系。在光合自养生长期间,由硫代硫酸盐和硫的氧化产生的电子通过细胞色素被捐赠给光合电子传输链。由硫代硫酸盐和硫氧化形成的电子也可用于依赖Hyn的氢的释放,这被证明是由光和质子动力驱动的。硫和硝酸盐均可促进与Hyn相连的氢的吸收。往返HynSL的电子流需要双向存在Isp2。氢酶相关的硫减少可以被QB竞争抑制剂叔丁烯抑制,这表明Hyn氢化酶和光合电子传输链之间存在氧化还原偶联。基于这些发现,对Hyn氢化酶的氧化还原键进行了建模。

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