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Altered mitochondrial retrograde signaling in response to mtDNA depletion or a ketogenic diet

机译:响应线粒体DNA耗竭或生酮饮食而改变的线粒体逆行信号

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摘要

Neurodegenerative diseases affect a staggering proportion of the population. Many neurodegenerative diseases including Alzheimer's disease, amyotrophic lateral sclerosis, and Parkinson's disease exhibit significant metabolic and bioenergetic changes both systemically and in the central nervous system. Accordingly, abnormalities in mitochondrial function are also present early in the pathogenesis of neurodegenerative diseases, leading to dysregulation of mitochondrial and metabolic signaling pathways and general neuronal dependence on anaerobic metabolism. Specifically, the electron transport chain function is reduced both systemically and in brains of individuals affected by Alzheimer's disease, amyotrophic lateral sclerosis, and Parkinson's disease. The goal of this dissertation is to better understand the mechanisms of mitochondrial retrograde signaling that may play a role in neurodegeneration.;In our first study, we show that mtDNA depletion of neuroblastoma cell lines significantly alters mitochondrial retrograde signaling in such a way that promotes upregulation of respiratory chain subunits, but inhibits mitochondrial mass as a whole. Further investigation into the bioenergetic status of these mtDNA-depleted cells suggests that these non-respiratory mitochondria are unable to contribute to the cell energetically, and are thus a metabolic liability. This study provides insight into mitochondrial signaling processes that may be present in neurodegenerative disorders.;Next, we examine the role of a ketogenic diet on mitochondrial signaling pathways in mouse brains. We show in this study that a ketogenic diet promotes a number of favorable metabolic changes in mice including reduction of systemic insulin resistance, an increase in the mitochondrial master regulator PGC1alpha and its relative PGC1beta, and an increase in some elements of mitochondrial mass. This study lays mechanistic groundwork for the potential use of a ketogenic diet in neurodegenerative disorders.;We then describe the generation of cybrid lines to evaluate the role of mtDNA in Alzheimer's disease, mild cognitive impairment, amyotrophic lateral sclerosis, and normal aging. These lines have shown us that mtDNA from individuals with these various conditions confer significant mitochondrial dysfunction to their respective cell lines, and that these lines will continue to provide significant insight into the role of mtDNA and mitochondrial function in disease states and aging.;Finally, we show that the pan-neurotrophin receptor p75NTR is necessary for estrogen-induced sympathetic nerve remodeling in the mouse uterus. This physiological phenomenon involves cyclical degeneration and regeneration of sympathetic nerves to uterine smooth muscle, and is an important model for studying axonal changes in normal degenerative and regenerative events.
机译:神经退行性疾病影响人口的惊人比例。许多神经退行性疾病,包括阿尔茨海默氏病,肌萎缩性侧索硬化症和帕金森氏病,在全身和中枢神经系统中均表现出明显的代谢和生物能变化。因此,线粒体功能异常也出现在神经退行性疾病的发病机理的早期,导致线粒体和代谢信号通路的失调以及对厌氧代谢的一般神经元依赖性。具体来说,受阿尔茨海默氏病,肌萎缩性侧索硬化症和帕金森氏症影响的个体的系统和大脑中的电子运输链功能都会降低。本文的目的是为了更好地了解可能在神经退行性病变中发挥作用的线粒体逆行信号传导机制。在我们的第一项研究中,我们表明神经母细胞瘤细胞系的mtDNA耗竭以促进上调的方式显着改变了线粒体逆行信号传导。呼吸链亚基,但整体上抑制线粒体质量。对这些mtDNA耗尽的细胞的生物能状态的进一步研究表明,这些非呼吸性线粒体无法从能量上促进细胞的活动,因此具有代谢功能。这项研究提供了对神经退行性疾病中可能存在的线粒体信号传导过程的见解。接下来,我们研究了生酮饮食对小鼠大脑线粒体信号通路的作用。我们在这项研究中显示,生酮饮食可促进小鼠体内许多有利的代谢变化,包括降低系统性胰岛素抵抗,增加线粒体主调节剂PGC1alpha及其相对PGC1beta以及增加线粒体质量的某些元素。该研究为生酮饮食在神经退行性疾病中的潜在应用奠定了机械基础。然后,我们描述了杂交系的产生,以评估mtDNA在阿尔茨海默氏病,轻度认知障碍,肌萎缩性侧索硬化和正常衰老中的作用。这些细胞系向我们展示了来自患有各种疾病的个体的mtDNA赋予其各自的细胞系明显的线粒体功能障碍,并且这些系将继续为mtDNA和线粒体功能在疾病状态和衰老中的作用提供重要的见识。我们显示泛神经营养蛋白受体p75NTR是雌激素诱导的小鼠子宫交感神经重塑所必需的。这种生理现象涉及周期性交感和交感神经向子宫平滑肌的再生,并且是研究正常退行性和再生性事件中轴突变化的重要模型。

著录项

  • 作者

    Selfridge, Jennifer Eva.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Physiology.;Neurosciences.;Cellular biology.;Molecular biology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 275 p.
  • 总页数 275
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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