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An Algal Nucleus-encoded Subunit of Mitochondrial ATP Synthase Rescues a Defect in the Analogous Human Mitochondrial-encoded Subunit

机译:线粒体ATP合酶的藻核编码亚基可挽救类似人类线粒体编码亚基的缺陷。

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摘要

Unlike most organisms, the mitochondrial DNA (mtDNA) of Chlamydomonas reinhardtii, a green alga, does not encode subunit 6 of F0F1-ATP synthase. We hypothesized that C. reinhardtii ATPase 6 is nucleus encoded and identified cDNAs and a single-copy nuclear gene specifying this subunit (CrATP6, with eight exons, four of which encode a mitochondrial targeting signal). Although the algal and human ATP6 genes are in different subcellular compartments and the encoded polypeptides are highly diverged, their secondary structures are remarkably similar. When CrATP6 was expressed in human cells, a significant amount of the precursor polypeptide was targeted to mitochondria, the mitochondrial targeting signal was cleaved within the organelle, and the mature polypeptide was assembled into human ATP synthase. In spite of the evolutionary distance between algae and mammals, C. reinhardtii ATPase 6 functioned in human cells, because deficiencies in both cell viability and ATP synthesis in transmitochondrial cell lines harboring a pathogenic mutation in the human mtDNA-encoded ATP6 gene were overcome by expression of CrATP6. The ability to express a nucleus-encoded version of a mammalian mtDNA-encoded protein may provide a way to import other highly hydrophobic proteins into mitochondria and could serve as the basis for a gene therapy approach to treat human mitochondrial diseases.
机译:与大多数生物体不同,绿藻莱茵衣藻的线粒体DNA(mtDNA)不编码F0F1-ATP合酶的亚基6。我们假设C. reinhardtii ATPase 6是核编码的,并鉴定了cDNA和一个指定该亚基的单拷贝核基因(CrATP6,具有八个外显子,其中四个编码线粒体靶向信号)。尽管藻类和人ATP6基因位于不同的亚细胞区室中,并且编码的多肽高度不同,但它们的二级结构却非常相似。当CrATP6在人细胞中表达时,大量前体多肽靶向线粒体,线粒体靶向信号在细胞器内被切割,成熟多肽被组装成人ATP合酶。尽管藻类和哺乳动物之间存在进化距离,但莱茵衣藻ATP酶6仍在人类细​​胞中发挥作用,因为通过表达克服了人类线粒体编码ATP6基因中致病性突变的线粒体细胞系中细胞活力和ATP合成方面的缺陷CrATP6。表达哺乳动物mtDNA编码蛋白的核编码版本的能力可能提供一种将其他高度疏水性蛋白导入线粒体的方法,并且可以用作治疗人类线粒体疾病的基因疗法的基础。

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