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RAG1 splicing mutation causes enhanced B cell differentiation and autoantibody production
Qing Min, Xin Meng, Qinhua Zhou, Ying Wang, Yaxuan Li, Nannan Lai, Ermeng Xiong, Wenjie Wang, Shoya Yasuda, Meiping Yu, Hai Zhang, Jinqiao Sun, Xiaochuan Wang, Ji-Yang Wang
Qing Min, Xin Meng, Qinhua Zhou, Ying Wang, Yaxuan Li, Nannan Lai, Ermeng Xiong, Wenjie Wang, Shoya Yasuda, Meiping Yu, Hai Zhang, Jinqiao Sun, Xiaochuan Wang, Ji-Yang Wang
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Research Article Immunology

RAG1 splicing mutation causes enhanced B cell differentiation and autoantibody production

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Abstract

Hypomorphic RAG1 or RAG2 mutations cause primary immunodeficiencies and can lead to autoimmunity, but the underlying mechanisms are elusive. We report here a patient carrying a c.116+2T>G homozygous splice site mutation in the first intron of RAG1, which led to aberrant splicing and greatly reduced RAG1 protein expression. B cell development was blocked at both the pro-B to pre-B transition and the pre-B to immature B cell differentiation step. The patient B cells had reduced B cell receptor repertoire diversity and decreased complementarity determining region 3 lengths. Despite B cell lymphopenia, the patient had abundant plasma cells in the BM and produced large quantities of IgM and IgG Abs, including autoantibodies. The proportion of naive B cells was reduced while the frequency of IgD–CD27– double-negative (DN) B cells, which quickly differentiated into Ab-secreting plasma cells upon stimulation, was greatly increased. Immune phenotype analysis of 52 patients with primary immunodeficiency revealed a strong association of the increased proportion of DN B and memory B cells with decreased number and proportion of naive B cells. These results suggest that the lymphopenic environment triggered naive B cell differentiation into DN B and memory B cells, leading to increased Ab production.

Authors

Qing Min, Xin Meng, Qinhua Zhou, Ying Wang, Yaxuan Li, Nannan Lai, Ermeng Xiong, Wenjie Wang, Shoya Yasuda, Meiping Yu, Hai Zhang, Jinqiao Sun, Xiaochuan Wang, Ji-Yang Wang

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Figure 7

The patient BM expressed high levels of IgG transcripts and contained abundant Ab-secreting cells.

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The patient BM expressed high levels of IgG transcripts and contained ab...
Real-time PCR was performed to analyze transcript levels of individual VH genes of the BM IgM (A), peripheral IgM (B), peripheral IgG (C), and BM IgG (D) from an HC (A) or 3 HCs (B–D) and the patient. For comparison, transcript level of each VH gene in HCs was set to 1. ACTIN was used as an internal control. (E) FACS analysis of the CD38+ plasma cells in the BM of the patient and 2 HCs. (F) Real-time PCR analysis of PRDM1 (BLIMP1) and SDC1 expression in BM cells from 3 HCs and the patient. Mean ± SD is shown. (G) ELISPOT assay of IgM- and IgG-secreting plasma cells in the BM of an HC and the patient. (H and I) Mean ± SD of the numbers and sizes of the spots of triplicate wells. Statistical analyses were performed using Student’s t test. *P < 0.05; **P < 0.01; ***P < 0.001; ****P < 0.0001.

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