Asymmetrical forward and reverse developmental trajectories determine molecular programs of B cell antigen receptor editing

生物 重组激活基因 B细胞 免疫球蛋白轻链 转录因子 V(D)J复合 淋巴细胞生成 B细胞受体 基因组编辑 表观遗传学 染色质 抗体 免疫球蛋白类转换 基因重排 遗传学 细胞生物学 基因 祖细胞 重组 清脆的 干细胞
作者
Michael K Okoreeh,Domenick E Kennedy,Akinola Olumide Emmanuel,Marcus R. Clark,Azam Mohsin,Robert H Ladd,Steven Erickson,Kaitlin C McLean,Brianna Madrigal,David Nemazee,Mark Maienschein-Cline,Malay Mandal,Marcus R Clark
出处
期刊:Science immunology [American Association for the Advancement of Science (AAAS)]
卷期号:7 (74) 被引量:1
标识
DOI:10.1126/sciimmunol.abm1664
摘要

During B lymphopoiesis, B cell progenitors progress through alternating and mutually exclusive stages of clonal expansion and immunoglobulin (Ig) gene rearrangements. Great diversity is generated through the stochastic recombination of Ig gene segments encoding heavy and light chain variable domains. However, this commonly generates autoreactivity. Receptor editing is the predominant tolerance mechanism for self-reactive B cells in the bone marrow (BM). B cell receptor editing rescues autoreactive B cells from negative selection through renewed light chain recombination first at Igκ then Igλ loci. Receptor editing depends on BM microenvironment cues and key transcription factors such as NF-κB, FOXO, and E2A. The specific BM factor required for receptor editing is unknown. Furthermore, how transcription factors coordinate these developmental programs to promote usage of the λ chain remains poorly defined. Therefore, we used two mouse models that recapitulate pathways by which Igλ light chain-positive B cells develop. The first has deleted J kappa (Jκ) genes and hence models Igλ expression resulting from failed Igκ recombination (Igκdel). The second models autoreactivity by ubiquitous expression of a single-chain chimeric anti-Igκ antibody (κ-mac). Here, we demonstrated that autoreactive B cells transit asymmetric forward and reverse developmental trajectories. This imparted a unique epigenetic landscape on small pre-B cells, which opened chromatin to transcription factors essential for Igλ recombination. The consequences of this asymmetric developmental path were both amplified and complemented by CXCR4 signaling. These findings reveal how intrinsic molecular programs integrate with extrinsic signals to drive receptor editing.
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