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嗜热聚球藻属PS I核心复合物的光谱表征。去除铁硫簇FA和FB前后A1-的相同再氧化动力学。

Spectroscopic characterization of PS I core complexes from thermophilic Synechococcus sp. Identical reoxidation kinetics of A1- before and after removal of the iron-sulfur-clusters FA and FB.

作者信息

Lüneberg J, Fromme P, Jekow P, Schlodder E

机构信息

Max-Volmer-Institut für Biophysikalische und Physikalische Chemie, Technische Universität Berlin, Germany.

出版信息

FEBS Lett. 1994 Jan 31;338(2):197-202. doi: 10.1016/0014-5793(94)80364-1.

Abstract

Monomeric and trimeric PS I complexes missing the three stromal subunits E,C and D (termed PS I core complexes) were prepared from the thermophilic cyanobacterium Synechococcus sp. by incubation with urea. The subunits E,C and D are sequentially removed. In the monomeric PS I the subunit C is removed with a half life of approx. 5 min. This is about eight times faster than in the trimeric PS I complex. In parallel with the removal of the FA/B containing subunit C the reduction kinetics of P700+ changed from a half life of about 25 ms to about 750 microseconds. The partner of P700+ in the 750 microseconds charge recombination was identified to be FX by the difference spectrum of this phase. There are some minor differences in the spectra of trimeric and monomeric PS I core complexes. At 77K the forward electron transfer from A1- to FX is blocked in the major fraction of the PS I core complexes and P700+ A1- recombines with a half life of about 220 microseconds. In the remaining fraction P700+FX- is formed and decays with a half life of approx. 10 ms at 77 K. The kinetics of the forward electron transfer from A1- to the iron-sulfur-clusters was measured in the native PS I and the corresponding core complexes. The reoxidation kinetics of A1- are identical in both cases (t1/2 = 180 ns). We conclude that FX is an obligatory intermediate in the normal forward electron transfer.

摘要

通过与尿素孵育,从嗜热蓝藻集胞藻属中制备出缺失三个基质亚基E、C和D的单体和三聚体光合系统I复合物(称为光合系统I核心复合物)。亚基E、C和D是依次被去除的。在单体光合系统I中,亚基C以约5分钟的半衰期被去除。这比在三聚体光合系统I复合物中快约八倍。在去除含FA/B的亚基C的同时,P700+的还原动力学从约25毫秒的半衰期变为约750微秒。通过该阶段的差光谱确定,在750微秒电荷复合中P700+的伙伴是FX。三聚体和单体光合系统I核心复合物的光谱存在一些细微差异。在77K时,光合系统I核心复合物的主要部分中从A1-到FX的正向电子转移受阻,P700+A1-以约220微秒的半衰期复合。在其余部分中形成P700+FX-,并在77K下以约10毫秒的半衰期衰减。在天然光合系统I及其相应的核心复合物中测量了从A1-到铁硫簇的正向电子转移动力学。两种情况下A1-的再氧化动力学相同(t1/2 = 180纳秒)。我们得出结论,FX是正常正向电子转移中的一个必需中间体。

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