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Double-Strand Breaks of Mouse Muscle mtDNA Promote Large-Deletions Similar to Multiple mtDNA Deletions in Humans

机译:小鼠肌肉mtDNA的双链断裂促进了类似于人类多个mtDNA缺失的大缺失。

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摘要

Mitochondrial DNA (mtDNA) deletions are a common cause of mitochondrial disorders and have been found to accumulate during normal aging. Despite the fact that hundreds of deletions have been characterized at the molecular level, their mechanisms of genesis are unknown. We tested the effect of double-strand breaks of muscle mtDNA by developing a mouse model where a mitochondrially-targeted Restriction Endonuclease (PstI) was expressed in skeletal muscle of mice. Because mouse mtDNA harbors two PstI sites, transgenic founders developed a mitochondrial myopathy associated with mtDNA depletion. The founders showed a chimeric pattern of transgene expression and their residual level of wild-type mtDNA in muscle was ~ 40% of controls. We were able to identify the formation of large mtDNA deletions in muscle of transgenic mice. A family of mtDNA deletions was identified, and most of these rearrangements involved one of the PstI sites and the 3′-end of the D-loop region. The deletions had no or small direct repeats at the breakpoint region. These features are essentially identical to the ones observed in humans with multiple mtDNA deletions in muscle, suggesting that doublestrand DNA breaks mediate the formation of large mtDNA deletions.
机译:线粒体DNA(mtDNA)缺失是线粒体疾病的常见原因,并且已发现其在正常衰老过程中积累。尽管事实上已经在分子水平上鉴定了数百种缺失,但是它们的发生机理尚不清楚。我们通过建立小鼠线粒体靶向限制性内切核酸酶(PstI)在小鼠骨骼肌中表达的小鼠模型,测试了肌肉mtDNA双链断裂的作用。由于小鼠的mtDNA带有两个PstI位点,因此转基因创建者发展了与mtDNA消耗有关的线粒体肌病。创始人显示出转基因表达的嵌合模式,其在肌肉中野生型mtDNA的残留水平约为对照的40%。我们能够鉴定出转基因小鼠肌肉中大型mtDNA缺失的形成。确定了一个家族的mtDNA缺失,并且这些重排大多数涉及PstI位点之一和D环区域的3'-末端。缺失在断点区域没有或有小的直接重复。这些特征与在肌肉中具有多个mtDNA缺失的人类所观察到的特征基本相同,这表明双链DNA断裂介导了大型mtDNA缺失的形成。

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