Syrett Camille M, Sindhava Vishal, Hodawadekar Suchita, Myles Arpita, Liang Guanxiang, Zhang Yue, Nandi Satabdi, Cancro Michael, Atchison Michael, Anguera Montserrat C
Department of Biomedical Sciences, School of Veterinary Medicine, University of Pennsylvania, Philadelphia PA, United States of America.
Department of Pathology, School of Medicine, University of Pennsylvania, Philadelphia, PA, United States of America.
PLoS Genet. 2017 Oct 9;13(10):e1007050. doi: 10.1371/journal.pgen.1007050. eCollection 2017 Oct.
X-chromosome inactivation (XCI) in female lymphocytes is uniquely regulated, as the inactive X (Xi) chromosome lacks localized Xist RNA and heterochromatin modifications. Epigenetic profiling reveals that Xist RNA is lost from the Xi at the pro-B cell stage and that additional heterochromatic modifications are gradually lost during B cell development. Activation of mature B cells restores Xist RNA and heterochromatin to the Xi in a dynamic two-step process that differs in timing and pattern, depending on the method of B cell stimulation. Finally, we find that DNA binding domain of YY1 is necessary for XCI in activated B cells, as ex-vivo YY1 deletion results in loss of Xi heterochromatin marks and up-regulation of X-linked genes. Ectopic expression of the YY1 zinc finger domain is sufficient to restore Xist RNA localization during B cell activation. Together, our results indicate that Xist RNA localization is critical for maintaining XCI in female lymphocytes, and that chromatin changes on the Xi during B cell development and the dynamic nature of YY1-dependent XCI maintenance in mature B cells predisposes X-linked immunity genes to reactivation.
雌性淋巴细胞中的X染色体失活(XCI)受到独特调控,因为失活的X(Xi)染色体缺乏局部Xist RNA和异染色质修饰。表观遗传分析表明,在早B细胞阶段,Xist RNA从Xi上丢失,并且在B细胞发育过程中,其他异染色质修饰也逐渐丢失。成熟B细胞的激活以动态的两步过程将Xist RNA和异染色质恢复到Xi上,这一过程在时间和模式上有所不同,具体取决于B细胞刺激的方法。最后,我们发现YY1的DNA结合结构域对于激活的B细胞中的XCI是必需的,因为体外删除YY1会导致Xi异染色质标记的丢失和X连锁基因的上调。YY1锌指结构域的异位表达足以在B细胞激活期间恢复Xist RNA的定位。总之,我们的结果表明,Xist RNA定位对于维持雌性淋巴细胞中的XCI至关重要,并且B细胞发育过程中Xi上的染色质变化以及成熟B细胞中YY1依赖性XCI维持的动态性质使X连锁免疫基因易于重新激活。