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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >In vitro and in vivo electron transfer to the triheme cytochrome subunit bound to the photosynthetic reaction center complex in the purple bacterium Rhodovulum sulfidophilum
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In vitro and in vivo electron transfer to the triheme cytochrome subunit bound to the photosynthetic reaction center complex in the purple bacterium Rhodovulum sulfidophilum

机译:体外和体内电子转移至结合于紫色细菌Rhodovulum sulfidophilum中光合反应中心复合物的三血红素细胞色素亚基

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摘要

The cytochrome subunit bound to the photosynthetic reaction center (RC) complex in Rhodovulum sulfidophilum lacks one heme-binding motif (CXXXCH) out of four motifs found in other purple bacteria resulting in the absence of the most distal heme from the RC-core complex (S. Masuda et al., J. Biol. Chem. 274 (1999) 10795). Cytochrome c_2, which acts as the electron donor to the RC was purified, and its gene was cloned and sequenced. The redox midpoint potential of cytochrome c_2 was determined to be E_m = 357 mV. The photo-oxidation and re-reduction of purified cytochrome c_2 were observed in the presence of membrane preparations. Flash-induced photo-oxidation and re-reduction of the RC-bound cytochrome were also observed in intact cells. Despite the unusual nature of the RC-bound cytochrome subunit, the cyclic electron transfer system in Rdv. sulfidophilum was shown to be similar to those in other purple bacteria.
机译:与其他紫色细菌中发现的四个基序相比,与硫丹红球菌光合作用中心(RC)复合体结合的细胞色素亚基缺少一个血红素结合基序(CXXXCH),导致RC核心复合体中没有最远端的血红素( S.Masuda等人,J.Biol.Chem.274(1999)10795)。纯化了作为RC电子供体的细胞色素c_2,并对其基因进行了克隆和测序。细胞色素c_2的氧化还原中点电势确定为E_m = 357 mV。在存在膜制剂的情况下观察到纯化的细胞色素c_2的光氧化和还原。在完整细胞中也观察到了闪光诱导的光氧化和RC结合的细胞色素的还原。尽管RC绑定的细胞色素亚基具有非同寻常的性质,但Rdv中的循环电子转移系统。嗜硫菌被证明与其他紫色细菌相似。

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