线粒体tRNA(Lys)异质突变及其在MERRF患者来源的线粒体转化子中的互补。

M Yoneda, T Miyatake, G Attardi
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引用次数: 19

摘要

线粒体DNA (mtDNA)中的异质tRNA(Lys)突变是导致MERRF综合征表型表达和传播的主要原因。然而,突变型和野生型mtDNA分子在细胞内的遗传行为仍然未知。我们证明了突变型和野生型mtdna的明显遗传互补,在野生型、MERRF转化体及其亚克隆中,通过细胞质将线粒体转移到无mtdna的细胞系rho细胞中,具有约10%的明显阈值。相比之下,两个功能互补的mtdna之间没有观察到相互作用,这两个mtdna最初位于不同的细胞器中,然后依次引入rho细胞系(遗传独立性)。这些结果表明线粒体间mtDNA分子的分选在该病的表型表达和传播中起着至关重要的作用。
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Heteroplasmic mitochondrial tRNA(Lys) mutation and its complementation in MERRF patient-derived mitochondrial transformants.

The heteroplasmic tRNA(Lys) mutation in the mitochondrial DNA (mtDNA) is responsible for the phenotypic expression and the transmission of MERRF syndrome. However, the genetic behaviors of the mutant and wild-type mtDNA molecules within a cell are still unknown. We demonstrated a clear genetic complementation of the mutant and wild-type mtDNAs, with a sharp threshold around 10% in the wild-type, in the MERRF transformants, and in their subclones by a cytoplast transfer of the mitochondria into an mtDNA-less cell line, rho o cell. By contrast, no interaction was observed between the two functionally complementary mtDNAs that were originally located in distinct organelles and sequentially introduced into a rho o cell line (genetic independence). These results imply that the sorting of the mtDNA molecules among mitochondria plays a crucial role in the phenotypic expression and transmission of the disease.

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