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Follicular regulatory T cells inhibit the development of granzyme B–expressing follicular helper T cells

机译:卵泡调节性T细胞抑制表达粒酶B的卵泡辅助性T细胞的发育

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摘要

T follicular regulatory (TFR) cells are found in the germinal center (GC) response and help shape the antibody (Ab) response. However, the precise role of TFR cells in the GC is controversial. Here, we addressed TFR cell function using mice with impaired TFR cell development (Bcl6-flox/Foxp3-cre, or Bcl6FC mice), mice with augmented TFR cell development (Blimp1-flox/Foxp3-cre, or Blimp1FC mice), and two different methods of immunization. Unexpectedly, GC B cell levels positively correlated with TFR cell levels. Using a gene profiling approach, we found that TFH cells from TFR-deficient mice showed strong upregulation of granzyme B (Gzmb) and other effector CD8+ T cell genes, many of which were Stat4 dependent. The upregulation of cytotoxic genes was the highest in TFH cells from TFR-deficient mice where Blimp1 was also deleted in Foxp3+ regulatory T cells (Bcl6-flox/Prdm1-flox/Foxp3-cre [DKO] mice). Granzyme B– and Eomesodermin-expressing TFH cells correlated with a higher rate of apoptotic GC B cells. Klrg1+ TFH cells from DKO mice expressed higher levels of Gzmb. Our data show that TFR cells repress the development of abnormal cytotoxic TFH cells, and the presence of cytotoxic TFH cells correlates with a lower GC and Ab response. Our data show what we believe is a novel mechanism of action for TFR cells helping the GC response.
机译:在生发中心(GC)响应中发现了T卵泡调节(TFR)细胞,并有助于塑造抗体(Ab)响应。但是,TFR细胞在GC中的确切作用是有争议的。在这里,我们使用TFR细胞发育受损的小鼠(Bcl6-flox / Foxp3-cre或Bcl6FC小鼠),TFR细胞发育增强的小鼠(Blimp1-flox / Foxp3-cre或Blimp1FC小鼠)处理了TFR细胞功能不同的免疫方法。出乎意料的是,GC B细胞水平与TFR细胞水平呈正相关。使用基因谱分析方法,我们发现来自TFR缺陷型小鼠的TFH细胞显示出颗粒酶B(Gzmb)和其他效应CD8 + T细胞基因的强烈上调,其中许多是Stat4依赖性的。在TFR缺陷型小鼠的TFH细胞中,细胞毒性基因的上调最高,而Foxp3 + 调节性T细胞(Bcl6-flox / Prdm1-flox / Foxp3-cre [DKO]小鼠)中的Blimp1也被删除)。表达粒酶B–和Eomesodermin的TFH细胞与较高的凋亡GC B细胞相关。 DKO小鼠的Klrg1 + TFH细胞表达较高水平的Gzmb。我们的数据表明,TFR细胞可抑制异常细胞毒性TFH细胞的发育,并且细胞毒性TFH细胞的存在与较低的GC和Ab反应相关。我们的数据表明,我们认为这是TFR细胞有助于GC反应的新型作用机制。

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