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黏连蛋白在静止和活化B淋巴细胞中的阶段特异性结合模式表明黏连蛋白在免疫球蛋白类别转换和成熟中发挥作用。

Stage-specific binding profiles of cohesin in resting and activated B lymphocytes suggest a role for cohesin in immunoglobulin class switching and maturation.

作者信息

Günal-Sadık Gamze, Paszkowski-Rogacz Maciej, Singaravelu Kalaimathy, Beyer Andreas, Buchholz Frank, Jessberger Rolf

机构信息

Institute of Physiological Chemistry, Faculty of Medicine Carl Gustav Carus, Dresden University of Technology, Dresden, Germany.

Department of Medical Systems Biology, University Hospital and Medical Faculty Carl Gustav Carus, Dresden University of Technology, Dresden, Germany.

出版信息

PLoS One. 2014 Nov 6;9(11):e111748. doi: 10.1371/journal.pone.0111748. eCollection 2014.

Abstract

The immunoglobulin heavy chain locus (Igh) features higher-order chromosomal interactions to facilitate stage-specific assembly of the Ig molecule. Cohesin, a ring-like protein complex required for sister chromatid cohesion, shapes chromosome architecture and chromatin interactions important for transcriptional regulation and often acts together with CTCF. Cohesin is likely involved in B cell activation and Ig class switch recombination. Hence, binding profiles of cohesin in resting mature murine splenic B lymphocytes and at two stages after cell activation were elucidated by chromatin immunoprecipitation and deep sequencing. Comparative genomic analysis revealed cohesin extensively changes its binding to transcriptional control elements after 48 h of stimulation with LPS/IL-4. Cohesin was clearly underrepresented at switch regions regardless of their activation status, suggesting that switch regions need to be cohesin-poor. Specific binding changes of cohesin at B-cell specific gene loci Pax5 and Blimp-1 indicate new cohesin-dependent regulatory pathways. Together with conserved cohesin/CTCF sites at the Igh 3'RR, a prominent cohesin/CTCF binding site was revealed near the 3' end of Cα where PolII localizes to 3' enhancers. Our study shows that cohesin likely regulates B cell activation and maturation, including Ig class switching.

摘要

免疫球蛋白重链基因座(Igh)具有高阶染色体相互作用,以促进Ig分子的阶段特异性组装。黏连蛋白是姐妹染色单体黏连所需的环状蛋白复合物,它塑造了对转录调控很重要的染色体结构和染色质相互作用,并且常常与CTCF协同作用。黏连蛋白可能参与B细胞活化和Ig类别转换重组。因此,通过染色质免疫沉淀和深度测序阐明了黏连蛋白在静息成熟小鼠脾脏B淋巴细胞以及细胞活化后两个阶段的结合图谱。比较基因组分析显示,在用LPS/IL-4刺激48小时后,黏连蛋白与转录控制元件的结合发生了广泛变化。无论开关区域的激活状态如何,黏连蛋白在开关区域的含量明显不足,这表明开关区域需要缺乏黏连蛋白。黏连蛋白在B细胞特异性基因座Pax5和Blimp-1处的特异性结合变化表明了新的黏连蛋白依赖性调控途径。与Igh 3'RR处保守的黏连蛋白/CTCF位点一起,在Cα的3'端附近发现了一个突出的黏连蛋白/CTCF结合位点,其中PolII定位于3'增强子。我们的研究表明,黏连蛋白可能调节B细胞活化和成熟,包括Ig类别转换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f76c/4222939/99b234049a6a/pone.0111748.g001.jpg

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