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一种II型NAD(P)H脱氢酶介导衣藻叶绿体中不依赖光的质体醌还原。

A type II NAD(P)H dehydrogenase mediates light-independent plastoquinone reduction in the chloroplast of Chlamydomonas.

作者信息

Jans Frédéric, Mignolet Emmanuel, Houyoux Pierre-Alain, Cardol Pierre, Ghysels Bart, Cuiné Stéphan, Cournac Laurent, Peltier Gilles, Remacle Claire, Franck Fabrice

机构信息

Laboratorie of Plant Biochemistry and Photobiology, Department of Life Sciences, Institute of Plant Biology, B22, University of Liège, 27 Boulevard du Rectorat, 4000-Liège, Belgium.

出版信息

Proc Natl Acad Sci U S A. 2008 Dec 23;105(51):20546-51. doi: 10.1073/pnas.0806896105. Epub 2008 Dec 12.

Abstract

In photosynthetic eukaryotes, nonphotochemical plastoquinone (PQ) reduction is important for the regulation of photosynthetic electron flow. In green microalgae where this process has been demonstrated, the chloroplastic enzyme that catalyses nonphotochemical PQ reduction has not been identified yet. Here, we show by an RNA interference (RNAi) approach that the NDA2 gene, belonging to a type II NAD(P)H dehydrogenases family in the green microalga Chlamydomonas reinhardtii, encodes a chloroplastic dehydrogenase that functions to reduce PQ nonphotochemically in this alga. Using a specific antibody, we show that the Nda2 protein is localized in chloroplasts of wild-type cells and is absent in two Nda2-RNAi cell lines. In both mutant cell lines, nonphotochemical PQ reduction is severely affected, as indicated by altered chlorophyll fluorescence transients after saturating illumination. Compared with wild type, change in light excitation distribution between photosystems ('state transition') upon inhibition of mitochondrial electron transport is strongly impaired in transformed cells because of inefficient PQ reduction. Furthermore, the amount of hydrogen produced by Nda2-RNAi cells under sulfur deprivation is substantially decreased compared with wild type, which supports previous assumptions that endogenous substrates serve as source of electrons for hydrogen formation. These results demonstrate the importance of Nda2 for nonphotochemical PQ reduction and associated processes in C. reinhardtii.

摘要

在光合真核生物中,非光化学质体醌(PQ)还原对于光合电子流的调节很重要。在已证实存在该过程的绿藻中,催化非光化学PQ还原的叶绿体酶尚未被鉴定出来。在这里,我们通过RNA干扰(RNAi)方法表明,莱茵衣藻这种绿藻中属于II型NAD(P)H脱氢酶家族的NDA2基因编码一种叶绿体脱氢酶,该酶在这种藻类中发挥非光化学还原PQ的作用。使用特异性抗体,我们表明Nda2蛋白定位于野生型细胞的叶绿体中,而在两个Nda2-RNAi细胞系中不存在。在这两个突变细胞系中,非光化学PQ还原均受到严重影响,饱和光照后叶绿素荧光瞬变的改变表明了这一点。与野生型相比,由于PQ还原效率低下,转化细胞中线粒体电子传递受抑制时光系统之间的光激发分布变化(“状态转换”)受到严重损害。此外,与野生型相比,Nda2-RNAi细胞在硫缺乏条件下产生的氢气量大幅减少,这支持了先前的假设,即内源性底物是氢形成的电子来源。这些结果证明了Nda2在莱茵衣藻非光化学PQ还原及相关过程中的重要性。

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本文引用的文献

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