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细胞色素b6/f的 Rieske 铁硫亚基中的单点突变导致拟南芥中质体醌氧化的pH依赖性改变。

Single point mutation in the Rieske iron-sulfur subunit of cytochrome b6/f leads to an altered pH dependence of plastoquinol oxidation in Arabidopsis.

作者信息

Jahns Peter, Graf Maria, Munekage Yuri, Shikanai Toshiharu

机构信息

Plant Biochemistry, Heinrich-Heine-Universität Düsseldorf, Universitätsstr. 1, Düsseldorf, Germany.

出版信息

FEBS Lett. 2002 May 22;519(1-3):99-102. doi: 10.1016/s0014-5793(02)02719-9.

DOI:10.1016/s0014-5793(02)02719-9
PMID:12023025
Abstract

The pgr1 mutant of Arabidopsis thaliana carries a single point mutation (P194L) in the Rieske subunit of the cytochrome b6/f (cyt b6/f) complex and is characterised by a reduced electron transport activity at saturating light intensities in vivo. We have investigated the electron transport in this mutant under in vitro conditions. Measurements of P700 reduction kinetics and of photosynthetic electron transport rates indicated that electron transfer from cyt b6/f to photosystem I is not generally reduced in the mutant, but that the pH dependence of this reaction is altered. The data imply that the pH-dependent inactivation of electron transport through cyt b6/f is shifted by about 1 pH unit to more alkaline pH values in pgr1 thylakoids in comparison with wild-type thylakoids. This interpretation was confirmed by determination of the transmembrane deltapH at different stromal pH values showing that the lumen pH in pgr1 mutant plants cannot drop below pH 6 reflecting most likely a shift of the pK and/or the redox potential of the oxidised Rieske protein.

摘要

拟南芥的pgr1突变体在细胞色素b6/f(cyt b6/f)复合体的 Rieske 亚基中携带一个单点突变(P194L),其特征是在体内饱和光强下电子传递活性降低。我们研究了该突变体在体外条件下的电子传递。对P700还原动力学和光合电子传递速率的测量表明,在突变体中,从cyt b6/f到光系统I的电子传递通常并未降低,但该反应的pH依赖性发生了改变。数据表明,与野生型类囊体相比,pgr1类囊体中通过cyt b6/f的电子传递的pH依赖性失活向更碱性的pH值偏移了约1个pH单位。通过测定不同基质pH值下的跨膜ΔpH证实了这一解释,结果表明pgr1突变体植物的类囊体腔pH不能降至pH 6以下,这很可能反映了氧化型 Rieske 蛋白的pK和/或氧化还原电位的偏移。

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