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表达缺陷型线粒体DNA聚合酶的小鼠早衰

Premature ageing in mice expressing defective mitochondrial DNA polymerase.

作者信息

Trifunovic Aleksandra, Wredenberg Anna, Falkenberg Maria, Spelbrink Johannes N, Rovio Anja T, Bruder Carl E, Bohlooly-Y Mohammad, Gidlöf Sebastian, Oldfors Anders, Wibom Rolf, Törnell Jan, Jacobs Howard T, Larsson Nils-Göran

机构信息

Department of Medical Nutrition, Karolinska Institutet, Novum, Karolinska University Hospital, S-141 86 Stockholm, Sweden.

出版信息

Nature. 2004 May 27;429(6990):417-23. doi: 10.1038/nature02517.

Abstract

Point mutations and deletions of mitochondrial DNA (mtDNA) accumulate in a variety of tissues during ageing in humans, monkeys and rodents. These mutations are unevenly distributed and can accumulate clonally in certain cells, causing a mosaic pattern of respiratory chain deficiency in tissues such as heart, skeletal muscle and brain. In terms of the ageing process, their possible causative effects have been intensely debated because of their low abundance and purely correlative connection with ageing. We have now addressed this question experimentally by creating homozygous knock-in mice that express a proof-reading-deficient version of PolgA, the nucleus-encoded catalytic subunit of mtDNA polymerase. Here we show that the knock-in mice develop an mtDNA mutator phenotype with a threefold to fivefold increase in the levels of point mutations, as well as increased amounts of deleted mtDNA. This increase in somatic mtDNA mutations is associated with reduced lifespan and premature onset of ageing-related phenotypes such as weight loss, reduced subcutaneous fat, alopecia (hair loss), kyphosis (curvature of the spine), osteoporosis, anaemia, reduced fertility and heart enlargement. Our results thus provide a causative link between mtDNA mutations and ageing phenotypes in mammals.

摘要

在人类、猴子和啮齿动物衰老过程中,线粒体DNA(mtDNA)的点突变和缺失会在多种组织中累积。这些突变分布不均,可在某些细胞中克隆性积累,导致心脏、骨骼肌和大脑等组织出现呼吸链缺陷的镶嵌模式。就衰老过程而言,由于其丰度低且与衰老仅存在相关性联系,它们可能的致病作用一直存在激烈争论。我们现在通过创建纯合敲入小鼠来实验性地解决这个问题,这些小鼠表达mtDNA聚合酶的核编码催化亚基PolgA的校对缺陷版本。在此我们表明,敲入小鼠出现了mtDNA突变体表型,点突变水平增加了三到五倍,同时缺失的mtDNA数量也增加。体细胞mtDNA突变的这种增加与寿命缩短以及衰老相关表型的过早出现有关,如体重减轻、皮下脂肪减少、脱发、脊柱后凸(脊柱弯曲)、骨质疏松、贫血、生育力下降和心脏扩大。因此,我们的结果在哺乳动物中建立了mtDNA突变与衰老表型之间的因果联系。

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