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莱茵衣藻中线粒体Nd7和Nd9复合体I亚基编码基因的失活。复合体I缺失对呼吸和能量代谢的影响。

Inactivation of genes coding for mitochondrial Nd7 and Nd9 complex I subunits in Chlamydomonas reinhardtii. Impact of complex I loss on respiration and energetic metabolism.

作者信息

Massoz Simon, Larosa Véronique, Plancke Charlotte, Lapaille Marie, Bailleul Benjamin, Pirotte Dorothée, Radoux Michèle, Leprince Pierre, Coosemans Nadine, Matagne René F, Remacle Claire, Cardol Pierre

机构信息

Genetics of Microorganisms, PhytoSYSTEMS, Department of Life Sciences, University of Liège, Belgium.

GIGA-Neuroscience, University of Liège, Belgium.

出版信息

Mitochondrion. 2014 Nov;19 Pt B:365-74. doi: 10.1016/j.mito.2013.11.004. Epub 2013 Dec 4.

Abstract

In Chlamydomonas, unlike in flowering plants, genes coding for Nd7 (NAD7/49 kDa) and Nd9 (NAD9/30 kDa) core subunits of mitochondrial respiratory-chain complex I are nucleus-encoded. Both genes possess all the features that facilitate their expression and proper import of the polypeptides in mitochondria. By inactivating their expression by RNA interference or insertional mutagenesis, we show that both subunits are required for complex I assembly and activity. Inactivation of complex I impairs the cell growth rate, reduces the respiratory rate, leads to lower intracellular ROS production and lower expression of ROS scavenging enzymes, and is associated to a diminished capacity to concentrate CO2 without compromising photosynthetic capacity.

摘要

与开花植物不同,衣藻中线粒体呼吸链复合体I的核心亚基Nd7(NAD7/49 kDa)和Nd9(NAD9/30 kDa)的编码基因是由细胞核编码的。这两个基因都具备促进其表达以及将多肽正确导入线粒体的所有特征。通过RNA干扰或插入诱变使它们的表达失活,我们发现这两个亚基对于复合体I的组装和活性都是必需的。复合体I失活会损害细胞生长速率,降低呼吸速率,导致细胞内活性氧(ROS)产生减少以及ROS清除酶的表达降低,并且与在不影响光合能力的情况下浓缩二氧化碳的能力减弱有关。

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