Ezrin Promotes Antigen Receptor Diversity during B Cell Development by Supporting Ig H Chain Variable Gene Recombination.

Varun Aysola, Christina Abd, Alexander H Kuo, Neetu Gupta
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Abstract

Genome-level rearrangements of Ig genes during B cell development are critical for generation of a diverse repertoire of BCRs that bind to a multitude of foreign Ags and some self Ags. Bone marrow B cell development involves a variety of cell-cell interactions, cell migration, and receptor signaling that likely benefit from the activity of membrane-cytoskeletal reorganizing proteins. However, the specific contribution of such proteins toward BCR repertoire diversification is poorly understood. Ezrin is a membrane-cytoskeletal linker protein that regulates mature B cell activation through spatial organization of the BCR. We employed next-generation sequencing to investigate whether Ezrin plays a role in IgH rearrangements and generation of BCR diversity in developing bone marrow B cells. BCR repertoire development occurred stochastically in B cell progenitors from both control and B cell conditional Ezrin-deficient mice. However, the loss of Ezrin resulted in fewer unique CDRs (CDR3s) in the BCRs and reduced Shannon entropy. Ezrin-deficient pre-B cells revealed similar utilization of joining (J) genes but significantly fewer variable (V) genes, thereby decreasing V-J combinatorial diversity. V-J junctional diversity, measured by CDR3 length and nucleotide additions and deletions, was not altered in Ezrin-deficient pre-B cells. Mechanistically, Ezrin-deficient cells showed a marked decrease in RAG1 gene expression, indicating a less efficient DNA recombination machinery. Overall, our results demonstrate that Ezrin shapes the BCR repertoire through combinatorial diversification.

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Ezrin通过支持Ig H链可变基因重组促进B细胞发育过程中抗原受体多样性。
在B细胞发育过程中,Ig基因的基因组水平重排对于产生多种bcr至关重要,这些bcr可以结合大量的外来Ags和一些自身Ags。骨髓B细胞的发育涉及多种细胞间相互作用、细胞迁移和受体信号传导,这些可能受益于膜-细胞骨架重组蛋白的活性。然而,这些蛋白质对BCR库多样化的具体贡献尚不清楚。Ezrin是一种膜-细胞骨架连接蛋白,通过BCR的空间组织调节成熟B细胞的活化。我们采用新一代测序技术来研究Ezrin是否在发育中的骨髓B细胞中IgH重排和BCR多样性的产生中起作用。在对照和B细胞条件型ezrin缺陷小鼠的B细胞祖细胞中,BCR库的发育是随机发生的。然而,Ezrin的缺失导致bcr中唯一cdr (CDR3s)减少,Shannon熵降低。缺乏ezrin的前b细胞对连接(J)基因的利用相似,但对可变(V)基因的利用明显减少,从而降低了V-J组合的多样性。通过CDR3长度和核苷酸添加和缺失来测量的V-J连接多样性在ezrin缺失的前b细胞中没有改变。在机制上,ezrin缺陷细胞显示RAG1基因表达显著降低,表明DNA重组机制效率较低。总体而言,我们的研究结果表明,Ezrin通过组合多样化塑造了BCR曲目。
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