1 型糖尿病取决于 CD4 驱动的转录抑制因子 Bcl6 的表达。

Diabetes Pub Date : 2025-06-01 DOI:10.2337/db23-0709
Dudley H McNitt, Jonathan M Williams, Joseph G Santitoro, Jacob Kim, James W Thomas, Rachel H Bonami
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引用次数: 0

摘要

高亲和性胰岛自身抗体可预测小鼠和人类的1型糖尿病,并将生殖中心(GC)与1型糖尿病发病机制联系在一起。T滤泡辅助细胞(Tfh)在1型糖尿病患者中增多,外周血中Tfh样细胞的变化可预测个体对阿帕他赛的反应。Tfh细胞支持GC反应,其成熟依赖于转录抑制因子BCL6。因此,我们假设 CD4 驱动的 Bcl6 缺失会破坏 GC 中基本的 T-B 淋巴细胞相互作用,从而预防 1 型糖尿病。为了验证这一假设,我们产生了 Bcl6fl/fl-CD4.Cre.NOD 小鼠,结果发现它们完全不受糖尿病的影响。与对照Bcl6fl/fl.NOD小鼠相比,Bcl6fl/fl-CD4.Cre.NOD小鼠胰腺中的胰岛炎严重程度和三级淋巴结构组织都得到了保留,胰腺和引流淋巴结中的CD4+、CD8+和B细胞数量也没有减少。CD4 驱动的功能性 BCL6 缺失导致糖尿病前期晚期胰腺淋巴结和胰腺中的 GC B 细胞和 Tfh 细胞数量显著减少。Bcl6fl/fl-CD4.Cre.NOD小鼠的自发性抗胰岛素自身抗体被削弱。这些数据凸显了BCL6是1型糖尿病的新型治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Type 1 Diabetes Depends on CD4-Driven Expression of the Transcriptional Repressor Bcl6.

High-affinity islet autoantibodies predict type 1 diabetes in mice and humans and implicate germinal centers (GCs) in disease pathogenesis. T follicular helper (Tfh) cells are increased in individuals with type 1 diabetes and alterations in Tfh-like cells in the peripheral blood predicted individual responses to abatacept. Tfh cells support GC responses and depend on the transcriptional repressor BCL6 for their maturation. Therefore, we hypothesized that CD4-driven deletion of Bcl6 would disrupt essential T- and B-cell interactions in GCs to prevent type 1 diabetes. To test this hypothesis, we generated Bcl6fl/fl-CD4.Cre.NOD mice and found they were completely protected against diabetes. Insulitis severity and tertiary lymphoid structure organization were preserved in the pancreas of Bcl6fl/fl-CD4.Cre.NOD mice, which did not show decreases in CD4+, CD8+, and B-cell numbers in the pancreas and draining lymph nodes, relative to control Bcl6fl/fl.NOD mice. CD4-driven loss of functional BCL6 resulted in significantly reduced GC B-cell and Tfh-cell numbers in the pancreatic lymph nodes and pancreas at late prediabetic intervals. Spontaneous anti-insulin autoantibody was blunted in Bcl6fl/fl-CD4.Cre.NOD mice. These data highlight BCL6 as a novel therapeutic target in type 1 diabetes.

Article highlights: Germinal center B cells and CD4+ T follicular helper cells are implicated in the pathogenesis of type 1 diabetes and depend upon the transcriptional repressor BCL6 for their maturation. This study tests the dependence of type 1 diabetes development on BCL6 expression in CD4+ cells. Data presented here show that CD4-driven loss of Bcl6 blocks germinal center formation, spontaneous insulin autoantibody production, and type 1 diabetes in nonobese diabetic mice, despite normal tertiary lymphoid structure formation in pancreatic islets. This study highlights BCL6 as a potential immunomodulatory target in type 1 diabetes.

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