Fli1缺失对B细胞群的影响:关注年龄相关B细胞和转录动力学。

IF 4.6
Kentaro Awaji, Sayaka Shibata, Asumi Koyama, Toyoki Yamamoto, Yuki Fukui, Satoshi Toyama, Jun Omatsu, Yuta Norimatsu, Tetsuya Ikawa, Yusuke Watanabe, Takuya Miyagawa, Takashi Yamashita, Yukiteru Nakayama, Maria Trojanowska, Shinichi Sato, Yoshihide Asano
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引用次数: 0

摘要

背景:Fli1表达的改变与多种自身免疫性疾病有关,但其对B细胞的影响仍未被研究。目的:本研究探讨了Fli1缺失对B细胞群的直接影响,重点是年龄相关B细胞(abc)。方法:Fli1 BcKO (Cd19-Cre+/-;流式细胞术分析Fli1flox/flox)和Cd19-Cre+/-小鼠。通过rna测序和atac测序检测Cd11b+Cd11c+ abc的转录/表观遗传谱。结果:与Cd19-Cre+/-小鼠相比,Fli1 BcKO小鼠滤泡区和边缘区B细胞明显减少,新形成的B细胞同时增加。此外,在Fli1 BcKO小鼠中观察到B- 1b B细胞以及Cd11b+Cd11c+或T-bet+Cd11c+ abc的显著增加。此外,这些小鼠滤泡B细胞中Cd138水平升高。对fli1缺失的abc进行转录分析,揭示了与细胞-细胞粘附相关的上调基因,以及与细胞激活或免疫反应相关的下调基因。探索染色质景观发现,Fli1缺失失调了干扰素调节因子家族的染色质可及性,这意味着在自身免疫中可能起作用。结论:这些发现提示由于Fli1缺乏导致B细胞群和免疫相关基因表达的复杂调节,揭示了其参与自身免疫过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Fli1 deletion on B cell populations: A focus on age-associated B cells and transcriptional dynamics.

Background: Altered Fli1 expression is associated with various autoimmune diseases, yet its impact on B cells remains unexplored.

Objective: This study investigated the direct effects of Fli1 depletion on B cell populations, focusing on age-associated B cells (ABCs).

Methods: Splenocytes of Fli1 BcKO (Cd19-Cre+/-; Fli1flox/flox) and Cd19-Cre+/- mice were analyzed flow cytometrically. Transcriptional/epigenetic profiles of Cd11b+Cd11c+ ABCs were examined by RNA-sequencing and ATAC-sequencing.

Results: Fli1 BcKO mice displayed a notable reduction in follicular and marginal zone B cells, with a concurrent rise in newly formed B cells compared to Cd19-Cre+/- mice. Additionally, a striking increase in B-1 B cells, as well as Cd11b+Cd11c+ or T-bet+Cd11c+ ABCs, was observed in Fli1 BcKO mice. Furthermore, these mice exhibited elevated Cd138 levels in follicular B cells. Conducting transcriptional analyses of Fli1-depleted ABCs unveiled upregulated genes associated with cell-cell adhesion, coupled with downregulated genes linked to cell activation or immune responses. Exploring the chromatin landscape found that Fli1 depletion dysregulated the chromatin accessibility of the interferon regulatory factor family, implying potential roles in autoimmunity.

Conclusion: These findings suggest complex modulations of B cell populations and immune-related gene expression due to Fli1 deficiency, shedding light on its involvement in autoimmune processes.

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CiteScore
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