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首页> 外文期刊>The journal of immunology >Cutting Edge: Adaptive Versus Innate Receptor Signals Selectively Control the Pool Sizes of Murine IFN-γ– or IL-17–Producing γδ T Cells upon Infection
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Cutting Edge: Adaptive Versus Innate Receptor Signals Selectively Control the Pool Sizes of Murine IFN-γ– or IL-17–Producing γδ T Cells upon Infection

机译:前沿:自适应对先天受体信号选择性控制感染小鼠的产生IFN-γ或IL-17的γδT细胞的库大小

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γδ T lymphocytes are commonly viewed as embracing properties of both adaptive and innate immunity. Contributing to this is their responsiveness to pathogen products, either with or without the involvement of the TCR and its coreceptors. This study clarifies this paradoxical behavior by showing that these two modes of responsiveness are the properties of two discrete sets of murine lymphoid γδ T cells. Thus, MyD88 deficiency severely impaired the response to malaria infection of CD27(?), IL-17A–producing γδ T cells, but not of IFN-γ–producing γδ cells. Instead, the latter compartment was severely contracted by ablating CD27, which synergizes with TCRγδ in the induction of antiapoptotic mediators and cell cycle-promoting genes in CD27(+), IFN-γ–secreting γδ T cells. Hence, innate versus adaptive receptors differentially control the peripheral pool sizes of discrete proinflammatory γδ T cell subsets during immune responses to infection.
机译:γδT淋巴细胞通常被视为具有适应性免疫和先天性免疫的特性。造成这种情况的原因是它们对病原体产品的响应能力,无论是否有TCR及其共受体参与。这项研究通过证明这两种反应模式是两组离散的鼠淋巴γδT细胞的特性,来澄清这种自相矛盾的行为。因此,MyD88缺乏症严重削弱了对CD27(?),产生IL-17A的γδT细胞对疟疾感染的应答,但对产生IFN-γ的γδ细胞却没有影响。取而代之的是,后者的腔室被消融的CD27严重收缩,CD27与TCRγδ协同诱导CD27(+)中分泌抗IFN-γ的γδT细胞中的抗凋亡介质和细胞周期促进基因。因此,先天性与适应性受体在感染的免疫应答过程中差异地控制离散的促炎性γδT细胞亚群的外周池大小。

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