DNA聚合酶γ催化亚基的过度表达导致黑腹果蝇线粒体DNA的耗竭。

E Lefai, M Calleja, I Ruiz de Mena, A T Lagina, L S Kaguni, R Garesse
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引用次数: 38

摘要

线粒体DNA (mtDNA)复制是线粒体生物发生的关键过程,但其调控机制尚不清楚。在这项研究中,我们评估了DNA聚合酶γ (pol γ)在果蝇细胞培养和发育中的作用,pol γ是mtDNA复制的关键酶。我们报道,在培养的Schneider细胞中过表达pol γ催化亚基(pol γ - α)不会改变mtDNA的数量或培养物的生长速度。多肽是针对线粒体的,但在内源性多肽明显超过其在细胞中功能需求的情况下,大量过量的pol γ - α不会干扰mtDNA的复制。与此形成鲜明对比的是,在转基因果蝇中,相同水平的pol - γ - α过表达会干扰mtDNA的复制过程,可能是通过改变DNA合成的机制来实现的,这表明果蝇细胞培养与发育中的生物体对mtDNA复制的需求和/或调控存在差异。在转基因果蝇中,pol γ - α的过度表达会产生mtDNA的显著耗竭,从而导致各种各样的表型效应。这些改变范围从蛹致死性到成虫的中度形态异常。取决于过度表达的程度和时间模式。我们的研究结果表明,尽管细胞在某些条件下可以耐受不同数量的pol γ催化亚基,但其水平在整个生物体中可能是至关重要的。
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Overexpression of the catalytic subunit of DNA polymerase gamma results in depletion of mitochondrial DNA in Drosophila melanogaster.

The mechanisms involved in the regulation of mitochondrial DNA (mtDNA) replication, a process that is crucial for mitochondrial biogenesis, are not well understood. In this study, we evaluate the role of DNA polymerase gamma (pol gamma), the key enzyme in mtDNA replication, in both Drosophila cell culture and in developing flies. We report that overexpression of the pol gamma catalytic subunit (pol gamma-alpha) in cultured Schneider cells does not alter either the amount of mtDNA or the growth rate of the culture. The polypeptide is properly targeted to mitochondria, yet the large excess of pol gamma-alpha does not interfere with mtDNA replication under these conditions where the endogenous polypeptide is apparently present in amounts that exceed of the demand for its function in the cell. In striking contrast, overexpression of pol gamma-alpha at the same level in transgenic flies interferes with the mtDNA replication process, presumably by altering the mechanism of DNA synthesis, suggesting differential requirements for, and/or regulation of, mtDNA replication in Drosophila cell culture versus the developing organism. Overexpression of pol gamma-alpha in transgenic flies produces a significant depletion of mtDNA that causes a broad variety of phenotypic effects. These alterations range from pupal lethality to moderate morphological abnormalities in adults. depending on the level and temporal pattern of overexpression. Our results demonstrate that although cells may tolerate a variable amount of the pol gamma catalytic subunit under some conditions, its level may be critical in the context of the whole organism.

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