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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Aging-associated mitochondrial DNA mutations alter oxidative phosphorylation machinery and cause mitochondrial dysfunctions
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Aging-associated mitochondrial DNA mutations alter oxidative phosphorylation machinery and cause mitochondrial dysfunctions

机译:衰老关联的线粒体DNA突变改变氧化磷酸化机械并引起线粒体功能障碍

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摘要

Our previous study generated a series of cybrids containing mitochondria of synaptosomes from mice at different ages. The following functional analysis on these cybrids revealed an age-dependent decline of mitochondrial function. To understand the underlying mechanisms that contribute to the age-related mitochondrial dysfunction, we focused on three cybrids carrying mitochondria derived from synaptosomes of the old mice that exhibited severe respiratory deficiencies. In particular, we started with a comprehensive analysis of mitochondrial genome by high resolution, high sensitive deep sequencing method. Compared with young, control, we detected a significant accumulation of heteroplasmic mtDNA mutations. These mutations included six alterations in main control region that has been shown to regulate overall gene-expression, and four alterations in protein coding region, two of which led to significant changes in complex I subunit ND5 and complex III subunit CytB. Interestingly, a reduced mtDNA-encoded protein synthesis was associated with the changes in the main control region. Likewise, mutations in ND5 and CytB were associated with defects in assembly of respiratory complexes. Altogether, the identified age-dependent accumulation of mtDNA mutations in mouse brain likely contributes to the decline in mitochondrial function.
机译:我们以前的研究产生了一系列含有不同年龄段的小鼠突触体的线粒体。对这些糖线的功能分析显示出线粒体功能的年龄依赖性下降。为了了解有助于年龄相关的线粒体功能障碍的潜在机制,我们专注于三种患有患有旧小鼠突触体的线粒体的三种糖蛋白患有严重的呼吸缺陷。特别是,我们开始通过高分辨率,高敏感的深度测序方法综合分析线粒体基因组。与杨,对照相比,我们检测到异质MTDNA突变的显着积累。这些突变包括已显示调节总体基因表达的主要控制区域的六种改变,以及蛋白质编码区的四种改变,其中两种改变导致复合I子单元ND5和复合III亚基细胞的显着变化。有趣的是,减少的MTDNA编码的蛋白质合成与主要对照区域的变化有关。同样,ND5和细胞中的突变与呼吸复合物组装的缺陷有关。总共,小鼠脑中MTDNA突变的鉴定年龄依赖性积累可能有助于线粒体功能的下降。

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  • 作者单位

    Wenzhou Med Univ Coll Lab Med &

    Life Sci Zhejiang Prov Key Lab Med Genet Key Lab Lab Med Minist;

    Capital Med Univ Xuanwu Hosp Beijing 100053 Peoples R China;

    Univ Texas Hlth Sci Ctr San Antonio Dept Cellular &

    Struct Biol San Antonio TX 78229 USA;

    Wenzhou Med Univ Coll Lab Med &

    Life Sci Zhejiang Prov Key Lab Med Genet Key Lab Lab Med Minist;

    Wenzhou Med Univ Coll Lab Med &

    Life Sci Zhejiang Prov Key Lab Med Genet Key Lab Lab Med Minist;

    Univ Texas Hlth Sci Ctr San Antonio Dept Cellular &

    Struct Biol San Antonio TX 78229 USA;

    Wenzhou Med Univ Coll Lab Med &

    Life Sci Zhejiang Prov Key Lab Med Genet Key Lab Lab Med Minist;

    Wenzhou Med Univ Coll Lab Med &

    Life Sci Zhejiang Prov Key Lab Med Genet Key Lab Lab Med Minist;

    Wenzhou Med Univ Coll Lab Med &

    Life Sci Zhejiang Prov Key Lab Med Genet Key Lab Lab Med Minist;

    Wenzhou Med Univ Coll Lab Med &

    Life Sci Zhejiang Prov Key Lab Med Genet Key Lab Lab Med Minist;

    Wenzhou Med Univ Coll Lab Med &

    Life Sci Zhejiang Prov Key Lab Med Genet Key Lab Lab Med Minist;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    Mitochondrial DNA; Mutation; Cybrid; Aging; Mitochondrial dysfunction; Deep sequencing;

    机译:线粒体DNA;突变;糖;老化;线粒体功能障碍;深度测序;

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