首页> 外文期刊>Nucleic Acids Research >mtDNA replicative potential remains constant during ageing: polymerase gamma activity does not correlate with age related cytochrome oxidase activity decline in platelets.
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mtDNA replicative potential remains constant during ageing: polymerase gamma activity does not correlate with age related cytochrome oxidase activity decline in platelets.

机译:mtDNA复制潜能在衰老过程中保持不变:聚合酶γ活性与血小板中与年龄相关的细胞色素氧化酶活性下降不相关。

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Progressive age-related oxidative phosphorylation (OxPhos) decline is well known in human tissues. Depletion of mitochondrial DNA (mtDNA) causes OxPhos defects in patients with myopathic syndromes and deficient mtDNA replication has been observed in cells cultured from patients with mitochondrial disease. Patients undergoing treatment for AIDS develop OxPhos defects via mtDNA depletion resulting from inhibition of mtDNA polymerase gamma (Polgamma) by 2'-deoxy 3'-azido thymidine. These findings by others give rise to a possible link between mtDNA replication and bioenergetic decline in disease and during ageing. We have designed an in vitro assay for Polgamma function in small tissue samples to explore this possible link. Platelet homogenate Polgamma showed an activity with a K m of 150 microM (dTTP), a V max of 11.8 pmol/min/mg, inhibited (41% inhibition; 50 microM) by ethidium bromide. Determination of several storage characteristics showed that platelets were a convenient source of Polgamma for assay. Polgamma activity in 45 subjects did not coincide with significant age-related decline (P<0.002; P) observed in cytochrome oxidase (CytOx) activity or with citrate synthase activity. Of the activities studied, the only significant age-wise variation was a 24% CytOx deficiency in elderly (>50; n = 19) compared to young (<51; n = 24) individuals (P<0.01; t). These results suggest a maintenance of total cellular mtDNA Polgamma processive levels during ageing, largely independent of total cellular bioenergetic status or mitochondrial number/density. The processive component of Polgamma is therefore unlikely to make a major contribution to age-related bioenergetic activity decline. This does not, however, preclude the possibility that transient periods of inhibition at crucial points of the cell cycle or development may augment existing intracellular deficiencies. The assay described here greatly facilitates study of Polgamma activity in patients with conditions involving mtDNA depletion or rearrangement.
机译:在人体组织中,与年龄有关的渐进性氧化磷酸化(OxPhos)下降是众所周知的。线粒体DNA(mtDNA)的消耗会导致肌病综合征患者的OxPhos缺陷,并且从线粒体疾病患者的培养细胞中已观察到mtDNA复制不足。接受艾滋病治疗的患者会由于2'-脱氧3'-叠氮基胸苷抑制mtDNA聚合酶γ(Polgamma)而导致mtDNA耗尽而导致OxPhos缺陷。其他人的这些发现导致了mtDNA复制与疾病和衰老过程中生物能下降之间的可能联系。我们设计了一种体外测定小组织样本中的Polgamma功能的方法,以探索这种可能的联系。血小板匀浆Polgamma的活性为K m为150 microM(dTTP),V max为11.8 pmol / min / mg,受到溴化乙锭的抑制(41%抑制; 50 microM)。对几种贮藏特性的测定表明,血小板是用于测定的Polgamma的方便来源。在45名受试者中,Polgamma活性与细胞色素氧化酶(CytOx)活性或柠檬酸合酶活性中观察到的年龄相关性显着下降(P <0.002; P)不相符。在所研究的活动中,唯一显着的年龄差异是老年人(> 50; n = 19)与年轻(<51; n = 24)个体(24%)之间的CytOx缺乏(P <0.01; t)。这些结果表明在衰老过程中总细胞mtDNA Polgamma持续水平的维持,很大程度上与总细胞生物能状态或线粒体数目/密度无关。因此,Polgamma的过程性成分不太可能对与年龄有关的生物能活动下降做出重大贡献。然而,这并不排除在细胞周期或发育的关键时刻抑制的短暂时期可能加剧现有的细胞内缺陷的可能性。此处描述的测定法极大地促进了患有mtDNA耗尽或重排的患者对Polgamma活性的研究。

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