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Discovery of a major D-loop replication origin reveals two modes of human mtDNA synthesis

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SCIENCE
卷 306, 期 5704, 页码 2098-2101

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1102077

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  1. NIGMS NIH HHS [GM11726] Funding Source: Medline

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Mammalian mitochondrial DNA mtDNA, replication has long been considered to occur by asymmetric synthesis of the two strands, starting at the multiple origins of the strand-displacement loop (D-loop). We report the discovery of a major replication origin at position 57 in the D-loop of several human cell lines (HeLa, A549, and 143B.TK-) and immortalized lymphocytes. The nascent chains starting at this origin, in contrast to those initiated at the previously described origins, do not terminate prematurely at the 3' end of the D-loop but proceed well beyond this control point, behaving as true replicating strands. This origin is mainly responsible for mtDNA maintenance under steady-state conditions, whereas mtDNA synthesis from the formerly identified D-loop origins may be more important for recovery after mtDNA depletion and for accelerating mtDNA replication in response to physiological demands.

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