首页> 外文OA文献 >The Alu neurodegeneration hypothesis: A primate-specific mechanism for neuronal transcription noise, mitochondrial dysfunction, and manifestation of neurodegenerative disease.
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The Alu neurodegeneration hypothesis: A primate-specific mechanism for neuronal transcription noise, mitochondrial dysfunction, and manifestation of neurodegenerative disease.

机译:alu神经变性假说:神经元特异性机制,用于神经元转录噪音,线粒体功能障碍和神经退行性疾病的表现。

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摘要

It is hypothesized that retrotransposons have played a fundamental role in primate evolution and that enhanced neurologic retrotransposon activity in humans may underlie the origin of higher cognitive function. As a potential consequence of this enhanced activity, it is likely that neurons are susceptible to deleterious retrotransposon pathways that can disrupt mitochondrial function. An example is observed in the TOMM40 gene, encoding a β-barrel protein critical for mitochondrial preprotein transport. Primate-specific Alu retrotransposons have repeatedly inserted into TOMM40 introns and at least one variant associated with late-onset Alzheimer's disease originated from an Alu insertion event. We provide evidence of enriched Alu content in mitochondrial genes and postulate that Alus can disrupt mitochondrial populations in neurons, thereby setting the stage for progressive neurologic dysfunction. This Alu neurodegeneration hypothesis is compatible with decades of research and offers a plausible mechanism for the disruption of neuronal mitochondrial homeostasis, ultimately cascading into neurodegenerative disease.
机译:据推测,逆转录转座子在灵长类动物的进化中起着基本作用,而人类神经系统逆转录转座子活性的增强可能是认知功能增强的基础。这种增强的活动的潜在结果是,神经元很可能易受有害的反转录转座子途径的破坏,从而破坏线粒体的功能。在TOMM40基因中观察到一个例子,该基因编码对线粒体前蛋白转运至关重要的β-桶状蛋白。灵长类特有的Alu逆转座子已反复插入TOMM40内含子,并且至少一种与迟发性阿尔茨海默氏病相关的变体源自Alu插入事件。我们提供了线粒体基因中丰富的Alu含量的证据,并假设Alus可以破坏神经元中的线粒体种群,从而为进行性神经功能障碍奠定了基础。这种Alu神经退行性假说与数十年的研究相吻合,并为神经元线粒体体内稳态的破坏提供了合理的机制,最终导致了神经退行性疾病的级联。

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