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Toll-like Receptor 7 Controls the Anti-Retroviral Germinal Center Response

机译:Toll样受体7控制抗逆转录病毒的生殖器中心反应。

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摘要

The development of vaccines that can enhance immunity to viral pathogens is an important goal. However, the innate molecular pathways that regulate the strength and quality of the immune response remain largely uncharacterized. To define the role of Toll-like receptor (TLR) signaling in control of a model retroviral pathogen, Friend virus (FV), I generated mice in which the TLR signaling adapter Myd88 was selectively deleted in dendritic cell (DC) or in B cell lineages. Deletion of Myd88 in DCs had little effect on immune control of FV, while B cell specific deletion of Myd88 caused a dramatic increase in viral infectious centers and a significantly reduced antibody response, indicating that B cell-intrinsic TLR signaling plays a crucial role, while TLR signaling in DCs is less important. I then identified the single-stranded RNA sensing protein TLR7 as being required for antibody-mediated control of FV by analyzing mice deficient in TLR7. Remarkably, B cells in infected TLR7-deficient mice upregulated CD69 and CD86 early in infection, but failed to develop into germinal center B cells. CD4 T cell responses were also attenuated in the absence of TLR7, but CD8 responses were TLR7 independent, suggesting the existence of additional pathways for detection of retroviral particles. Together these results demonstrate that the vertebrate immune system detects retroviruses in vivo via TLR7 and that this pathway regulates a key checkpoint controlling development of germinal center B cells.
机译:开发可以增强对病毒病原体免疫力的疫苗是一个重要的目标。然而,调节免疫应答强度和质量的先天分子途径在很大程度上仍未鉴定。为了定义Toll样受体(TLR)信号在模型逆转录病毒病原体Friend病毒(FV)的控制中的作用,我生成了小鼠,其中TLR信号转接头Myd88在树突状细胞(DC)或B细胞中被选择性删除。血统。 DC中Myd88的缺失对FV的免疫控制影响不大,而Myd88的B细胞特异性缺失导致病毒感染中心急剧增加,抗体反应显着降低,表明B细胞内在TLR信号传导起关键作用,而DC中的TLR信令不太重要。然后,我通过分析缺乏TLR7的小鼠,确定了单链RNA感应蛋白TLR7是抗体介导的FV控制所必需的。值得注意的是,感染的TLR7缺陷型小鼠中的B细胞在感染初期就上调了CD69和CD86,但未能发育为生发中心B细胞。在没有TLR7的情况下,CD4 T细胞应答也减弱了,但CD8应答与TLR7无关,这表明存在用于检测逆转录病毒颗粒的其他途径。这些结果共同表明,脊椎动物免疫系统通过TLR7在体内检测到逆转录病毒,并且该途径调节了控制生发中心B细胞发育的关键检查点。

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