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Bank1 modulates the differentiation and molecular profile of key B cell populations in autoimmunity
Gonzalo Gómez Hernández, Toro Domínguez, Georgina Galicia, María Morell, Marta E. Alarcón-Riquelme
Gonzalo Gómez Hernández, Toro Domínguez, Georgina Galicia, María Morell, Marta E. Alarcón-Riquelme
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Research Article Genetics

Bank1 modulates the differentiation and molecular profile of key B cell populations in autoimmunity

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Abstract

This study aimed at defining the role of the B cell adaptor protein BANK1 in the appearance of age-associated B cells (ABCs) in 2 SLE mouse models (TLR7.tg6 and imiquimod-induced mice), crossed with Bank1–/– mice. The absence of Bank1 led to a significant reduction in ABC levels, also affecting other B cell populations. To gain deeper insights into their differentiation pathway and the effect of Bank1 on B cell populations, a single-cell transcriptome assay was performed. In the TLR7.tg6 model, we identified 10 clusters within B cells, including an ABC-specific cluster that was decreased in Bank1-deficient mice. In its absence, ABCs exhibited an antiinflammatory gene expression profile, while being proinflammatory in Bank1-sufficient lupus-prone mice. Trajectory analyses revealed that ABCs originated from marginal zone and memory-like B cells, ultimately acquiring transcriptional characteristics associated with atypical memory cells and long-lived plasma cells. Also, Bank1 deficiency normalized the presence of naive B cells, which were nearly absent in lupus-prone mice. Interestingly, Bank1 deficiency significantly reduced a distinct cluster containing IFN-responsive genes. These findings underscore the critical role of Bank1 in ABC development, affecting early B cell stages toward ABC differentiation, and the presence of IFN-stimulated gene–containing B cells, both populations determinant for autoimmunity.

Authors

Gonzalo Gómez Hernández, Toro Domínguez, Georgina Galicia, María Morell, Marta E. Alarcón-Riquelme

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Figure 7

Numbers of ABCs closely correlate with Th cells in the extrafollicular space where Bank1 modulates IgG2c production.

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Numbers of ABCs closely correlate with Th cells in the extrafollicular s...
(A) Frequency of CXCR4+IgG2c+ cells among CD138+B220– cells from the spleens of the TLR7.tg6 model. Total mice analyzed: WT (n = 7), T7 (n = 12), T7.B1–/– (n = 10). (B) Representative cryosections of spleens from WT, TLR7.tg6, and TLR7.tg6.Bank1–/– mice, stained with anti-B220 DAPI, anti-CXCR4 APC, anti-IgG2c FITC, and anti-CD138 PE. The red arrow shows a digital zoom (×2) selected from each image. Scale bar: 100 μm (left panels); 20 μm (right panels). This representative experiment was conducted 3 different times. All images were captured using a Confocal Laser Microscope Zeiss LSM 710. (C) Area in μm2 of CXCR4+IgG2c+CD138+ cells in the spleens from 32-week-old TLR7.tg6 model. Total mice analyzed: WT (n = 5), T7 (n = 5), T7.B1–/– (n = 5). (D) Frequency of Tefh cells (CD62L–CD44+PDGL-1–CXCR4+) among CD3+CD4+ cells from the spleens of 32-week-old TLR7.tg6 model. Total mice analyzed: WT (n = 11), T7 (n = 7), T7.B1–/– (n = 13). (E) Correlation between the percentage of ABCs among CD19+ B cells and the percentage of Tefh among CD4+ T cells, using Pearson correlation coefficient, in WT, TLR7.tg6, and TLR7.tg6.Bank1–/– mice. Each point represents 1 individual mouse. Data are shown as mean ± SEM. Mann-Whitney U test with Welch’s correction was used to test statistical significance.

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