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Ischemic Preconditioning Alters the Epigenetic Profile of the Brain from Ischemic Intolerance to Ischemic Tolerance

机译:缺血预处理可将大脑的表观遗传谱从缺血性不耐受转变为缺血性耐受

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摘要

Ischemic preconditioning is an innate neuroprotective mechanism in which a sub-injurious ischemic exposure increases the brain’s ability to withstand a subsequent, normally injurious ischemic insult. Part of ischemic preconditioning neuroprotection stems from an epigenetic reprogramming of the brain to a phenotype of ischemic tolerance, which results in a gene expression profile different from that observed in the non-injured and ischemia-injured brains. Such neuroprotective reprograming, activated by ischemic preconditioning, requires specific changes in DNA accessibility coordinated with activation of transcriptional activator and repressor proteins, which allows for expression of specific neuroprotective proteins despite a general repression of gene expression. In this review we examine the effects of injurious ischemia and ischemic preconditioning on the regulation of DNA methylation, histone post-translational modifications, and non-coding RNA expression. There is increasing interest in the role of epigenetics in disease pathobiology, and whether and how pharmacological manipulation of epigenetic processes may allow for ischemic neuroprotection. Therefore, a better understanding of the epigenomic determinants underlying the modulation of gene expression that lead to ischemic tolerance or cell death offers the promise of novel neuroprotective therapies that target global reprograming of genomic activity versus individual cellular signaling pathways.Electronic supplementary materialThe online version of this article (doi:10.1007/s13311-013-0202-9) contains supplementary material, which is available to authorized users.
机译:缺血预处理是一种先天性神经保护机制,其中亚损伤性局部缺血暴露会增强大脑承受随后的通常是损伤性局部缺血损伤的能力。局部缺血预处理神经保护的一部分源于大脑的表观遗传重编程为局部缺血耐受的表型,这导致基因表达谱不同于在未损伤和缺血损伤的脑中观察到的基因表达谱。这种通过缺血预处理进行的神经保护性重编程,要求DNA可及性发生特定变化,并与转录激活因子和阻遏蛋白的激活相协​​调,尽管基因表达受到普遍抑制,但仍允许表达特定的神经保护蛋白。在这篇综述中,我们研究了伤害性缺血和缺血预处理对DNA甲基化,组蛋白翻译后修饰和非编码RNA表达的调节作用。表观遗传学在疾病病理生物学中的作用,以及表观遗传过程的药理学操作是否以及如何进行缺血性神经保护,越来越引起人们的关注。因此,对导致缺血耐受或细胞死亡的基因表达调控背后的表观基因决定因素的更好理解为新的神经保护疗法提供了希望,该疗法针对基因组活性相对于单个细胞信号传导途径的全球重编程。文章(doi:10.1007 / s13311-013-0202-9)包含补充材料,授权用户可以使用。

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