首页> 外文期刊>Molecular Plant >Arabidopsis tic62 trol mutant lacking thylakoid-bound ferredoxin-NADP+ oxidoreductase shows distinct metabolic phenotype.
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Arabidopsis tic62 trol mutant lacking thylakoid-bound ferredoxin-NADP+ oxidoreductase shows distinct metabolic phenotype.

机译:缺乏类囊体结合铁氧还蛋白-NADP + 氧化还原酶的拟南芥tic62 trol突变体表现出独特的代谢表型。

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摘要

Ferredoxin-NADP+ oxidoreductase (FNR), functioning in the last step of the photosynthetic electron transfer chain, exists both as a soluble protein in the chloroplast stroma and tightly attached to chloroplast membranes. Surface plasmon resonance assays showed that the two FNR isoforms, LFNR1 and LFNR2, are bound to the thylakoid membrane via the C-terminal domains of Tic62 and TROL proteins in a pH-dependent manner. The tic62 trol double mutants contained a reduced level of FNR, exclusively found in the soluble stroma. Although the mutant plants showed no visual phenotype or defects in the function of photosystems under any conditions studied, a low ratio of NADPH/NADP+ was detected. Since the CO2 fixation capacity did not differ between the tic62 trol plants and wild-type, it seems that the plants are able to funnel reducing power to most crucial reactions to ensure survival and fitness of the plants. However, the activity of malate dehydrogenase was down-regulated in the mutant plants. Apparently, the plastid metabolism is able to cope with substantial changes in directing the electrons from the light reactions to stromal metabolism and thus only few differences are visible in steady-state metabolite pool sizes of the tic62 trol plants.
机译:铁氧还蛋白-NADP + 氧化还原酶(FNR)在光合作用电子转移链的最后一步起作用,既作为可溶性蛋白存在于叶绿体基质中,又紧密附着在叶绿体膜上。表面等离振子共振分析表明,两种FNR亚型LFNR1和LFNR2以Th62和TROL蛋白质的C末端结构域以pH依赖的方式与类囊体膜结合。 tic62 trol双突变体的FNR含量降低,仅在可溶性基质中存在。尽管在任何研究条件下,突变植株均未表现出视觉表型或光系统功能缺陷,但检测到NADPH / NADP + 的比例较低。由于tic62 trol植物与野生型之间的CO 2 固定能力没有差异,因此看来植物能够将还原力集中到最关键的反应上,以确保植物的存活和健康。然而,苹果酸脱氢酶的活性在突变植物中被下调。显然,质体代谢能够应付从光反应到基质代谢的电子引导过程中的实质性变化,因此,tic62 trol植物的稳态代谢物库大小只有很少的差异可见。

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