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Photosynthetic electron transport from water to NADP+ driven by photosystem II in inside-out chloroplast vesicles

机译:由光系统II驱动的内外叶绿体囊泡中光合电子从水向NADP +的传输

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摘要

It is now widely held that the light-induced noncyclic (linear) electron transport from water to NADP+ requires the collaboration in series of the two photosystems that operate in oxygen-evolving cells: photosystem II (PSII) photooxidizes water and transfers electrons to photosystem I (PSI); PSI photoreduces ferredoxin, which in turn reduces NADP+ (the Z scheme). However, a recently described alternative scheme envisions that PSII drives the noncyclic electron transport from water to ferredoxin and NADP+ without the collaboration of PSI, whose role is limited to cyclic electron transport [Arnon, D. I., Tsujimoto, H. Y. & Tang, G. M.-S. (1981) Proc. Natl. Acad. Sci. USA 78, 2942-2946]. Reported here are findings at variance with the Z scheme and consistent with the alternative scheme. Thylakoid membrane vesicles were isolated from spinach chloroplasts by the two-phase aqueous polymer partition method. Vesicles, originating mainly from appressed chloroplast membranes that are greatly enriched in PSII, were turned inside-out with respect to the original sidedness of the membrane. With added plastocyanin, ferredoxin, and ferredoxin-NADP+ reductase, the inside-out vesicles enriched in PSII gave a significant photoreduction of NADP+ with water as electron donor, under experimental conditions that appear to exclude the participation of PSI.
机译:现在,人们普遍认为,光诱导的非循环(线性)电子从水到NADP + 的传输需要在氧气演化细胞中运行的两个光系统的串联协作:光系统II(PSII)光氧化水并将电子转移到光系统I(PSI); PSI光还原铁氧还蛋白,从而降低NADP + (Z方案)。但是,最近描述的另一种方案设想PSII无需PSI的协作就可以驱动非循环电子从水到铁氧还蛋白和NADP + 的迁移,而PSI的作用仅限于循环电子的传输[Arnon,DI,Tsujimoto, HY&Tang,GM-S。 (1981)Proc。 Natl。学院科学USA 78,2942-2946]。这里报告的发现与Z方案存在差异,并且与替代方案一致。通过两相水性聚合物分配方法从菠菜叶绿体中分离类囊体膜囊泡。囊泡主要来自贴附在PSII中的富集的叶绿体膜,相对于膜的原始侧面,其囊泡由内向外翻转。在实验中,添加质体蓝蛋白,铁氧还蛋白和铁氧还蛋白-NADP + 还原酶后,富含PSII的由内而外的囊泡可以显着光还原NADP + 。似乎排除了PSI参与的条件。

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