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ND3 and ND4L Subunits of Mitochondrial Complex I, Both Nucleus Encoded in Chlamydomonas reinhardtii, Are Required for Activity and Assembly of the Enzyme

机译:线粒体复合体I的ND3和ND4L亚基,都是在莱茵衣藻中编码的两个核,都是酶活性和组装所必需的

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Made of more than 40 subunits, the rotenone-sensitive NADH:ubiquinone oxidoreductase (complex I) is the most intricate membrane-bound enzyme of the mitochondrial respiratory chain. In vascular plants, fungi, and animals, at least seven complex I subunits (ND1, -2, -3, -4, -4L, -5, and -6; ND is NADH dehydrogenase) are coded by mitochondrial genes. The role of these highly hydrophobic subunits in the enzyme activity and assembly is still poorly understood. In the unicellular green alga Chlamydomonas reinhardtii, the ND3 and ND4L subunits are encoded in the nuclear genome, and we show here that the corresponding genes, called NUO3 and NUO11, respectively, display features that facilitate their expression and allow the proper import of the corresponding proteins into mitochondria. In particular, both polypeptides show lower hydrophobicity compared to their mitochondrion-encoded counterparts. The expression of the NUO3 and NUO11 genes has been suppressed by RNA interference. We demonstrate that the absence of ND3 or ND4L polypeptides prevents the assembly of the 950-kDa whole complex I and suppresses the enzyme activity. The putative role of hydrophobic ND subunits is discussed in relation to the structure of the complex I enzyme. A model for the assembly pathway of the Chlamydomonas enzyme is proposed.
机译:鱼藤酮敏感性NADH:泛醌氧化还原酶(复合体I)由40多个亚基组成,是线粒体呼吸链中最复杂的膜结合酶。在维管植物,真菌和动物中,线粒体基因编码至少七个复合体I亚基(ND1,-2,-3,-4,-4L,-5和-6; ND为NADH脱氢酶)。这些高度疏水的亚基在酶活性和组装中的作用仍知之甚少。在单细胞绿藻莱茵衣藻中,ND3和ND4L亚基在核基因组中编码,我们在此显示相应的基因,分别称为 NUO3 NUO11 分别具有促进其表达并允许相应蛋白质正确导入线粒体的特征。特别地,与它们的线粒体编码的对应物相比,两种多肽均显示出较低的疏水性。 RNA干扰抑制了 NUO3 NUO11 基因的表达。我们证明,缺少ND3或ND4L多肽会阻止950 kDa整个复合体I的组装并抑制酶的活性。疏水性ND亚基的推定作用与复合物I酶的结构有关。提出了一种 Chlamydomonas 酶组装途径的模型。

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