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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >FcRL4 acts as an adaptive to innate molecular switch dampening BCR signaling and enhancing TLR signaling.
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FcRL4 acts as an adaptive to innate molecular switch dampening BCR signaling and enhancing TLR signaling.

机译:FcRL4充当先天性分子开关的自适应信号,从而抑制BCR信号传导并增强TLR信号传导。

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摘要

Fc receptor-like 4 (FcRL4) is expressed on the surface of a subset of memory B cells (MBCs) located at sites of invading pathogens in mucosal lymphoid tissues in healthy individuals. Recently, FcRL4(+) MBCs were shown to be greatly increased in number in the peripheral blood of HIV-infected viremic individuals, in whom they are associated with B-cell exhaustion, and in individuals chronically reinfected with malaria. In the present study, we provide evidence that the expression of FcRL4 in human B-cell lines disrupts immune synapse formation and blocks antigen-induced BCR signaling at the point of Syk phosphorylation, blocking downstream activation of PLC-gamma2 and Vav and the induction of calcium responses and CD69 expression. FcRL4 functions by ligation-independent mechanisms that require the 3 tyrosine residues in its cytoplasmic domain and involves its phosphorylation and association with the tyrosine phosphatases SHP-1 and SHP-2. Remarkably, FcRL4 is concentrated in endosomes after treatment with the TLR9 agonist CpG and enhances signaling through TLR9, as measured by increased expression of CD23. These findings suggest that FcRL4 may act as a molecular switch in B cells to dampen adaptive immune signaling and enhance innate signaling in response to chronic antigenic stimulation.
机译:Fc受体样4(FcRL4)在健康个体的粘膜淋巴组织中的侵入病原体部位的记忆B细胞(MBC)的子集表面上表达。最近,FcRL4(+)MBCs的数量在HIV感染的病毒血症患者的外周血中显着增加,这些患者与B细胞衰竭有关,在慢性再感染疟疾的患者中。在本研究中,我们提供的证据表明,人B细胞系中FcRL4的表达破坏了免疫突触的形成,并在Syk磷酸化时阻断了抗原诱导的BCR信号传导,从而阻断了PLC-γ2和Vav的下游激活以及对Syk的诱导。钙反应和CD69表达。 FcRL4通过依赖连接的机制发挥功能,该机制在其胞质结构域中需要3个酪氨酸残基,并涉及其磷酸化以及与酪氨酸磷酸酶SHP-1和SHP-2的缔合。值得注意的是,FcRL4在用TLR9激动剂CpG处理后浓缩在内体中,并通过CD23的表达增加而增强了通过TLR9的信号传导。这些发现表明,FcRL4可以作为B细胞中的分子开关,以抑制适应性免疫信号并增强对固有抗原刺激的先天信号。

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