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光系统I中的双向电子转移:用甘氨酸残基取代靠近与PsaB结合的叶醌A1B的不对称色氨酸会改变A1B的氧化还原特性,并在低温下阻断正向电子转移。

Bidirectional electron transfer in photosystem I: replacement of the symmetry-breaking tryptophan close to the PsaB-bound phylloquinone A1B with a glycine residue alters the redox properties of A1B and blocks forward electron transfer at cryogenic temperatures.

作者信息

Ali Kulsam, Santabarbara Stefano, Heathcote Peter, Evans Michael C W, Purton Saul

机构信息

Department of Biology, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Biochim Biophys Acta. 2006 Dec;1757(12):1623-33. doi: 10.1016/j.bbabio.2006.07.006. Epub 2006 Aug 3.

Abstract

A conserved tryptophan residue located between the A(1B) and F(X) redox centres on the PsaB side of the Photosystem I reaction centre has been mutated to a glycine in Chlamydomonas reinhardtii, thereby matching the conserved residue found in the equivalent position on the PsaA side. This mutant (PsaB:W669G) was studied using EPR spectroscopy with a view to understanding the molecular basis of the reported kinetic differences in forward electron transfer from the A(1A) and the A(1B) phyllo(semi)quinones. The kinetics of A(1)(-) reoxidation due to forward electron transfer or charge recombination were measured by electron spin echo spectroscopy at 265 K and 100 K, respectively. At 265 K, the reoxidation kinetics are considerably lengthened in the mutant in comparison to the wild-type. Under conditions in which F(X) is initially oxidised the kinetics of charge recombination at 100 K are found to be biphasic in the mutant while they are substantially monophasic in the wild-type. Pre-reduction of F(X) leads to biphasic kinetics in the wild-type, but does not alter the already biphasic kinetic properties of the PsaB:W669G mutant. Reduction of the [4Fe-4S] clusters F(A) and F(B) by illumination at 15 K is suppressed in the mutant. The results provide further support for the bi-directional model of electron transfer in Photosystem I of C. reinhardtii, and indicate that the replacement of the tryptophan residue with glycine mainly affects the redox properties of the PsaB bound phylloquinone A(1B).

摘要

位于莱茵衣藻光系统I反应中心PsaB侧A(1B)和F(X)氧化还原中心之间的一个保守色氨酸残基已突变为甘氨酸,从而与PsaA侧等效位置上的保守残基相匹配。对该突变体(PsaB:W669G)进行了电子顺磁共振光谱研究,旨在了解报道的来自A(1A)和A(1B)叶醌(半醌)的正向电子转移动力学差异的分子基础。分别在265 K和100 K下,通过电子自旋回波光谱测量了由于正向电子转移或电荷复合导致的A(1)(-)再氧化动力学。在265 K时,与野生型相比,突变体中的再氧化动力学显著延长。在F(X)最初被氧化的条件下,发现在100 K时突变体中的电荷复合动力学是双相的,而在野生型中基本上是单相的。F(X)的预还原在野生型中导致双相动力学,但不会改变PsaB:W669G突变体已经是双相的动力学性质。在15 K下光照使突变体中[4Fe-4S]簇F(A)和F(B)的还原受到抑制。这些结果为莱茵衣藻光系统I中电子转移的双向模型提供了进一步支持,并表明用甘氨酸取代色氨酸残基主要影响与PsaB结合的叶醌A(1B)的氧化还原性质。

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