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表观遗传学修饰在多发性硬化症中作用的研究进展 被引量:1

Role of epigenetic modification in multiple sclerosis:an advance
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摘要 多发性硬化症既是经典的神经免疫性疾病,又是神经退行性疾病。越来越多的证据表明,表观遗传学改变与多发性硬化症的发病相关。表观遗传学修饰可以影响基因的表达,但不会改变DNA的序列。DNA甲基化、组蛋白修饰和微小RNA相关基因转录和翻译的调控是表观遗传的3种重要机制。表观遗传学可能通过调节多发性硬化症的病因(包括遗传易感性和环境危险因素)和发病机制(包括炎症脱髓鞘和神经退行性变化的机制)的多个环节影响多发性硬化症的发病。本文综述了表观遗传学修饰在多发性硬化症发生中的作用,并为从表观遗传学角度治疗多发性硬化症提出建议。 Multiple sclerosis(MS)is a classic neuroimmunologic and neurodegenerative disease.A growing body of evidence suggests that epigenetic changes are associated with the development of MS.Epigenetic modifications can influence the expression of genes,but will not change the sequence of DNA.DNA methylation,histone modification and microRNAassociated post-transcriptional gene silencing are three key epigenetic mechanisms that influence gene expression.Epigenetic mechanisms may regulate MS onset by affecting the genetic susceptibility and environmental risk factors,and by influencing the inflammatory demyelination and neurodegeneration involved in MS pathology.In this review we summarized recent studies on the role of epigenetic changes in the pathophysiology and treatment of MS.
作者 赵明 曹莉
出处 《第二军医大学学报》 CAS CSCD 北大核心 2014年第7期774-779,共6页 Academic Journal of Second Military Medical University
关键词 表观遗传学 多发性硬化 DNA甲基化 组蛋白类 微RNAS epigenetic multiple sclerosis DNA methylation histones microRNAs
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  • 1Trapp BD, Bo L, Mork S, Chang A. Pathogenesis of tissue injury in MS lesions. J Neuroimmunol 1999, 98: 49-56.
  • 2Dhib-Jalbut S. Pathogenesis of myelin/oligodendrocyte damage in multiple sclerosis. Neurology 2007, 68: S13-21; discussion S43-54.
  • 3Guo MF, Ji N, Ma CG. Immunologic pathogenesis of multiple sclerosis. Neurosci Bull 2008, 24: 381-386.
  • 4Barnett MH, Prineas JW. Relapsing and remitting multiple sclerosis: pathology of the newly forming lesion. Ann Neurol 2004, 55: 458-468.
  • 5Henderson AP, Barnett MH, Parratt JD, Prineas JW. Multiple sclerosis: distribution of inflammatory cells in newly forming lesions. Ann Neurol 2009, 66: 739-753.
  • 6Huitinga I, van Rooijen N, de Groot C J, Uitdehaag BM, Dijkstra CD. Suppression of experimental allergic encephalomyelitis in Lewis rats after elimination of macrophages. J Exp Med 1990, 172: 1025-1033.
  • 7Heppner FL, Greter M, Marino D, Falsig J, Raivich G, Hovelmeyer N, et al. Experimental autoimmune encephalomyelitis repressed by microglial paralysis. Nat Med 2005, 11: 146-152.
  • 8David S, Kroner A. Repertoire of microglial and macrophage responses after spinal cord injury. Nat Rev Neurosci 2011, 12: 388-399.
  • 9Shechter R, Schwartz M. Harnessing monocyte-derived macrophages to control central nervous system pathologies: no longer 'if' but 'how'. J Pathol 2013, 229: 332-346.
  • 10Butovsky O, Landa G, Kunis G, Ziv Y, Avidan H, Greenberg N, et al. Induction and blockage of oligodendrogenesis by differently activated microglia in an animal model of multiple sclerosis. J Clin Invest 2006, 116: 905-915.

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