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Characterization and analysis of multiple large-scale rearrangements of mitochondrial DNA in rat liver, heart, and brain.

机译:大鼠肝脏,心脏和大脑中线粒体DNA的多个大规模重排的特征分析。

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摘要

Large-scale rearrangements of mitochondrial DNA have been reported in numerous animal species including humans. These rearrangements are believed to contribute to the etiology of a variety of human neuromuscular diseases and endocrine disorders such as Kearns-Sayre Syndrome, Pearson's Syndrome and diabetes mellitus. Additionally, the accumulation of deletions in mitochondrial DNA has been shown to correlate with the normal ageing process. There is yet much to learn about mtDNA rearrangements before their contribution to disease states can be fully elucidated. Consequently, it is the goal of our laboratory to establish the rat as an animal model to study how mtDNA rearrangements occur, accumulate, and propagate under normal conditions. To that end, the liver, heart, and brain mtDNA from rats ranging in age from 2-day old neonates to 33 month old senescent animals were analyzed for large-scale rearrangements (deletions/insertions) using nested PCR and electron microscopy. The prevalence of both deletions and insertions in the genome was analyzed by measuring the genome length of hundreds of mtDNA molecules obtained from pups and senescent animals. In both the pup and senescent samples mtDNA molecules which deviated from the wild-type mitochondrial genome length were detected. As the magnitude of the deviation increased, the percentage of effected molecules decreased. This indicates that there are more molecules effected by small-scale rearrangements than potentially more detrimental large-scale rearrangements. Through the use of nested PCR, rearrangement junctions were found throughout the genome including the D-Loop, 16S rRNA gene and numerous tRNA genes. Seventy different rearrangements have been sequenced. These were found in all ages and tissue types analyzed. One of the rearrangements was found in several tissue types and in multiple animals. Several other rearrangements had end points within a few bases of this commonly found rearrangement, implicating this region as a hot spot. The majority of the rearrangements lacked direct repeats at their end points. When present, the short direct repeats were up to 6-bp in length with 3- and 4-bp repeats predominating. The majority of the rearrangement end points were located within potential stem-loop structures of the mitochondrial genome. The results from this study indicate that mtDNA rearrangements occur throughout the lifespan in numerous tissues. Hot spots indicate that certain regions of the genome are more susceptible to the rearrangement process. The lack of direct repeats at the end points of all of the rearrangements suggests that multiple mechanisms may exist for the formation of mtDNA rearrangements. One of these mechanisms may involve stem-loop structures.
机译:线粒体DNA的大规模重排已报道在包括人类在内的许多动物物种中。这些重排被认为有助于多种人类神经肌肉疾病和内分泌失调的病因,例如凯恩斯-赛尔综合症,皮尔逊氏综合症和糖尿病。另外,线粒体DNA中缺失的积累已显示与正常衰老过程相关。在充分阐明mtDNA对疾病状态的影响之前,还有很多要学习的知识。因此,我们实验室的目标是将大鼠建立为动物模型,以研究在正常条件下mtDNA重排如何发生,积累和繁殖。为此,使用巢式PCR和电​​子显微镜分析了从2天大的新生婴儿到33个月大的衰老动物的大鼠肝脏,心脏和大脑的mtDNA,以进行大规模重排(缺失/插入)。通过测量从幼犬和衰老动物获得的数百个mtDNA分子的基因组长度,分析了基因组中缺失和插入的普遍性。在幼犬和衰老样品中均检测到了与野生型线粒体基因组长度不同的mtDNA分子。随着偏差量的增加,受影响分子的百分比降低。这表明与潜在更大的有害的大规模重排相比,受小规模重排影响的分子更多。通过使用巢式PCR,在整个基因组中发现了重排连接,包括D-Loop,16S rRNA基因和许多tRNA基因。已对70种不同的重排进行了排序。这些被发现在所有年龄段和所分析的组织类型中。在几种组织类型和多种动物中发现了一种重排。其他几种重排的终点都在这种常见重排的几个碱基之内,这意味着该区域是一个热点。大多数重排在其终点都没有直接重复。当存在时,短的直接重复序列的长度最大为6-bp,其中3和4bp的重复序列占主导。大多数重排终点位于线粒体基因组的潜在茎环结构内。这项研究的结果表明,mtDNA重排发生在整个生命周期中的许多组织中。热点表明基因组的某些区域更容易发生重排过程。在所有重排的终点都没有直接重复,这表明可能存在多种机制来形成mtDNA重排。这些机制之一可能涉及茎环结构。

著录项

  • 作者单位

    Virginia Commonwealth University.;

  • 授予单位 Virginia Commonwealth University.;
  • 学科 Biology Molecular.; Biology Cell.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;细胞生物学;
  • 关键词

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