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组蛋白H2A去泛素化酶MYSM1对抗体反应的表观遗传调控

Epigenetic Regulation of Antibody Responses by the Histone H2A Deubiquitinase MYSM1.

作者信息

Jiang Xiao-Xia, Chou YuChia, Jones Lindsey, Wang Tao, Sanchez Suzi, Huang Xue F, Zhang Lei, Wang Changyong, Chen Si-Yi

机构信息

Department of Molecular Microbiology and Immunology, Norris Comprehensive Cancer Center Keck School of Medicine, University of Southern California, Los Angeles, California, 90033, USA.

Department of Advanced Interdisciplinary Studies, Institute of Basic Medical Sciences, Beijing, 100850, China.

出版信息

Sci Rep. 2015 Sep 8;5:13755. doi: 10.1038/srep13755.

Abstract

B cell-mediated antibody response plays critical roles in protective immunity, as well as in the pathogenesis of allergic and autoimmune diseases. Epigenetic histone and DNA modifications regulate gene transcription and immunity; however, so far, little is known about the role of epigenetic regulation in antibody responses. In this study, we found that mice deficient in the histone H2A deubiquitinase MYSM1, despite their severe defect in B cell development, exhibit an enhanced antibody response against both T cell-dependent and independent antigens. We revealed that MYSM1 intrinsically represses plasma cell differentiation and antibody production. Mechanistic studies demonstrated that MYSM1 is a transcriptional activator of Pax5, the repressors of plasma cell differentiation, by facilitating key transcriptional factor recruitment and coordinating histone modifications at the Pax5 loci. Hence, this study uncovers a critical role for MYSM1 in epigenetically repressing plasma cell differentiation and antibody production, in addition to its opposing, active role in B cell development. Importantly, this study further provides a new target and strategy to modulate antibody production and responses with profound therapeutic implications.

摘要

B细胞介导的抗体反应在保护性免疫以及过敏性和自身免疫性疾病的发病机制中发挥着关键作用。表观遗传的组蛋白和DNA修饰调节基因转录和免疫;然而,到目前为止,关于表观遗传调控在抗体反应中的作用知之甚少。在本研究中,我们发现缺乏组蛋白H2A去泛素化酶MYSM1的小鼠,尽管其B细胞发育存在严重缺陷,但对T细胞依赖性和非依赖性抗原均表现出增强的抗体反应。我们揭示了MYSM1内在地抑制浆细胞分化和抗体产生。机制研究表明,MYSM1通过促进关键转录因子募集并协调Pax5基因座处的组蛋白修饰,是浆细胞分化抑制因子Pax5的转录激活因子。因此,本研究揭示了MYSM1在表观遗传上抑制浆细胞分化和抗体产生中的关键作用,此外它在B细胞发育中还具有相反的积极作用。重要的是,本研究进一步提供了一个新的靶点和策略来调节抗体产生和反应,具有深远的治疗意义。

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