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Systemic lupus erythematosus (SLE) is an archetypical systemic, autoimmune inflammatory disease , of which the mechanism still not unveiled. Studies on epigenetics in SLE have long been the subject of investigation and as part of epigenetics. DNA methylation has been confirmed to play a role in the pathogenesis of SLE. The high autore-activity of CD4~+ T cell from SLE patients is associated with DNA hypomethylation. DNA hypomethylation is crucial to induce SLE - like autoimmune disease in SLE - non - susceptible mice. The reactivation of inactive X chromosome by hypomethylation may lead to high incidence of SLE in women. Drug - induced SLE is also connected with DNA hypomethylation. To understand the role of DNA methylation in the onset of SLE comprehensively, we review the findings reported in the literatures about DNA methylation and SLE.

作者:袁敏;沈南;唐元家;罗晓兵

来源:中国病理生理杂志 2009 年 25卷 11期

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作者:
袁敏;沈南;唐元家;罗晓兵
来源:
中国病理生理杂志 2009 年 25卷 11期
标签:
红斑狼疮,系统性 DNA甲基化 CpG岛 X染色体 Lupus erythematosus,systemic DNA methylation CpG island X chromosome
Systemic lupus erythematosus (SLE) is an archetypical systemic, autoimmune inflammatory disease , of which the mechanism still not unveiled. Studies on epigenetics in SLE have long been the subject of investigation and as part of epigenetics. DNA methylation has been confirmed to play a role in the pathogenesis of SLE. The high autore-activity of CD4~+ T cell from SLE patients is associated with DNA hypomethylation. DNA hypomethylation is crucial to induce SLE - like autoimmune disease in SLE - non - susceptible mice. The reactivation of inactive X chromosome by hypomethylation may lead to high incidence of SLE in women. Drug - induced SLE is also connected with DNA hypomethylation. To understand the role of DNA methylation in the onset of SLE comprehensively, we review the findings reported in the literatures about DNA methylation and SLE.

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