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从需氧生长和光合生长细胞中分离的红螺菌膜中细胞色素b+50的检测。

Detection of cytochrome b+50 in membranes of Rhodospirillum rubrum isolated from aerobically and phototrophically grown cells.

作者信息

Niederman R A, Hunter C N, Mallon D E, Jones O T

出版信息

Biochem J. 1980 Feb 15;186(2):453-9. doi: 10.1042/bj1860453.

Abstract
  1. Dark equilibrium potentiometric titrations were conducted on membranes purified from Rhodospirillum rubrum in an effort to identify b-type cytochrome components reported in other Rhodospirillaceae. In preparations from aerobically grown cells virtually devoid of bacteriochlorophyll a, three components were observed at 560-540 nm. Their oxidation-reduction midpoint potentials assigned by computer-assisted analysis were +195, +50 and -110 mV at pH 7.0; each of these fitted closely to theoretical single-electron equivalent curves. 2. In chromatophores from phototrophically grown carotenoidless mutant G-9, three components were also observed with E0' +190, +50 and -90mV. 3. The alpha-band of the +50mV component exhibited an absorption maximum near 560nm in difference spectra obtained at fixed oxidation-reduction potentials. 4. This component could be demonstrated most readily in purified membrane preparations and may have been obscured in previous studies by residual cytochrome c'. 5. This is the first definitive report of cytochrome b+50 in membranes from Rs. rubrum and aligns this bacterium with other Rhodospirillaceae in which this component functions in light-driven cyclic electron flow.
摘要
  1. 对从深红红螺菌纯化的膜进行了暗平衡电位滴定,以鉴定其他红螺菌科中报道的b型细胞色素成分。在几乎不含细菌叶绿素a的需氧生长细胞的制剂中,在560 - 540nm处观察到三种成分。通过计算机辅助分析确定的它们在pH 7.0时的氧化还原中点电位分别为+195、+50和 - 110mV;每一个都与理论单电子等效曲线紧密拟合。2. 在光养生长的无类胡萝卜素突变体G - 9的载色体中,也观察到三种成分,E0' 分别为+190、+50和 - 90mV。3. 在固定氧化还原电位下获得的差示光谱中,+50mV成分的α带在560nm附近表现出最大吸收。4. 该成分在纯化的膜制剂中最容易被证明,并且在先前的研究中可能被残留的细胞色素c' 掩盖。5. 这是关于深红红螺菌膜中细胞色素b +50的首次明确报道,并使该细菌与其他红螺菌科一致,在这些红螺菌科中该成分在光驱动的循环电子流中起作用。

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THE OXIDASE SYSTEM OF HETEROTROPHICALLY-GROWN RHODOSPIRILLUM RUBRUM.异养生长的深红红螺菌的氧化酶系统
Biochim Biophys Acta. 1965 Mar 22;96:395-428. doi: 10.1016/0005-2787(65)90560-5.
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Kinetic studies on the oxidase systems of photosynthetic bacteria.光合细菌氧化酶系统的动力学研究。
Biochim Biophys Acta. 1966 Jan 4;112(1):1-7. doi: 10.1016/s0926-6585(96)90002-3.
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Multiplicity of electron transport reactions in bacterial photosynthesis.细菌光合作用中电子传递反应的多样性。
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