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拟南芥中细胞色素c的缺失会降低细胞色素c氧化酶复合体IV的稳定性,并改变氧化还原代谢,而不影响复合体I和复合体III。

Lack of cytochrome c in Arabidopsis decreases stability of Complex IV and modifies redox metabolism without affecting Complexes I and III.

作者信息

Welchen Elina, Hildebrandt Tatjana M, Lewejohann Dagmar, Gonzalez Daniel H, Braun Hans-Peter

机构信息

Instituto de Agrobiotecnología del Litoral (IAL), CONICET, Universidad Nacional del Litoral, Santa Fe, Argentina.

出版信息

Biochim Biophys Acta. 2012 Jul;1817(7):990-1001. doi: 10.1016/j.bbabio.2012.04.008. Epub 2012 Apr 19.

Abstract

We studied the role of cytochrome c (CYTc), which mediates electron transfer between Complexes III and IV, in cellular events related with mitochondrial respiration, plant development and redox homeostasis. We analyzed single and double homozygous mutants in both CYTc-encoding genes from Arabidopsis: CYTC-1 and CYTC-2. While individual mutants were similar to wild-type, knock-out of both genes produced an arrest of embryo development, showing that CYTc function is essential at early stages of plant development. Mutants in which CYTc levels were extremely reduced respective to wild-type had smaller rosettes with a pronounced decrease in parenchymatic cell size and an overall delay in development. Mitochondria from these mutants had lower respiration rates and a relative increase in alternative respiration. Furthermore, the decrease in CYTc severely affected the activity and the amount of Complex IV, without affecting Complexes I and III. Reactive oxygen species levels were reduced in these mutants, which showed induction of genes encoding antioxidant enzymes. Ascorbic acid levels were not affected, suggesting that a small amount of CYTc is enough to support its normal synthesis. We postulate that, in addition to its role as an electron carrier between Complexes III and IV, CYTc influences Complex IV levels in plants, probably reflecting a role of this protein in Complex IV stability. This double function of CYTc most likely explains why it is essential for plant survival.

摘要

我们研究了细胞色素c(CYTc)在与线粒体呼吸、植物发育和氧化还原稳态相关的细胞事件中的作用,CYTc介导复合物III和复合物IV之间的电子传递。我们分析了拟南芥中两个CYTc编码基因CYTC-1和CYTC-2的单纯合突变体和双纯合突变体。虽然单个突变体与野生型相似,但两个基因的敲除导致胚胎发育停滞,表明CYTc功能在植物发育早期至关重要。与野生型相比,CYTc水平极度降低的突变体莲座叶较小,薄壁细胞大小明显减小,发育总体延迟。这些突变体的线粒体呼吸速率较低,交替呼吸相对增加。此外,CYTc的减少严重影响了复合物IV的活性和数量,而不影响复合物I和复合物III。这些突变体中的活性氧水平降低,表现出编码抗氧化酶的基因的诱导。抗坏血酸水平不受影响,表明少量的CYTc足以支持其正常合成。我们推测,除了作为复合物III和复合物IV之间的电子载体的作用外,CYTc还影响植物中复合物IV的水平,这可能反映了该蛋白在复合物IV稳定性中的作用。CYTc的这种双重功能很可能解释了为什么它对植物生存至关重要。

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