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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >CBLB Constrains Inactivated Vaccine-Induced CD8(+) T Cell Responses and Immunity against Lethal Fungal Pneumonia
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CBLB Constrains Inactivated Vaccine-Induced CD8(+) T Cell Responses and Immunity against Lethal Fungal Pneumonia

机译:CBLB限制灭活的疫苗诱导的CD8(+)T细胞应答和免疫对致死真菌肺炎的影响

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摘要

Fungal infections in CD4(+) T cell immunocompromised patients have risen sharply in recent years. Although vaccines offer a rational avenue to prevent infections, there are no licensed fungal vaccines available. Inactivated vaccines are safer but less efficacious and require adjuvants that may undesirably bias toward poor protective immune responses. We hypothesized that reducing the TCR signaling threshold could potentiate antifungal CD8(+) T cell responses and immunity to inactivated vaccine in the absence of CD4(+) T cells. In this study, we show that CBLB, a negative regulator of TCR signaling, suppresses CD8(+) T cells in response to inactivated fungal vaccination in a mouse model of CD4(+) T cell lymphopenia. Conversely, Cblb deficiency enhanced both the type 1 (e.g., IFN-gamma) and type 17 (IL-17A) CD8(+) T cell responses to inactivated fungal vaccines and augmented vaccine immunity to lethal fungal pneumonia. Furthermore, we show that immunization with live or inactivated vaccine yeast did not cause detectable pathologic condition in Cblb(-/-) mice. Augmented CD8(+) T cell responses in the absence of CBLB also did not lead to terminal differentiation or adversely affect the expression of transcription factors T-bet, Eomes, and ROR gamma t. Additionally, our adoptive transfer experiments showed that CBLB impedes the effector CD8(+) T cell responses in a cell-intrinsic manner. Finally, we showed that ablation of Cblb overcomes the requirement of HIF-1 alpha for expansion of CD8(+) T cells upon vaccination. Thus, adjuvants that target CBLB may augment inactivated vaccines and immunity against systemic fungal infections in vulnerable patients.
机译:CD4(+)T细胞的真菌感染近年来急剧上升。虽然疫苗提供理性途径以防止感染,但没有可用许可的真菌疫苗。灭活疫苗更安全但不太有效,需要佐剂,这可能对差的保护性免疫应答偏向。我们假设减少TCR信号传导阈值可以在不存在CD4(+)T细胞的情况下使抗真菌CD8(+)T细胞应答和免疫具有灭活疫苗。在该研究中,我们表明CBLB是TCR信号传导的负调节剂,抑制CD8(+)T细胞响应CD4(+)T细胞淋巴结肾病尼亚的小鼠模型中的灭活真菌疫苗接种。相反,CBLB缺陷增强了1型(例如,IFN-Gamma)和17型(IL-17A)CD8(+)T细胞对灭活的真菌疫苗和增强疫苗免疫的CD8(+)T细胞反应对致死的真菌肺炎。此外,我们表明,用活血或灭活疫苗酵母免疫没有引起CBLB(/ - )小鼠的可检测的病理病症。在没有CBLB的情况下,增强CD8(+)T细胞应答也没有导致末端分化或产生不利影响转录因子T-BET,EOMES和RORγT的表达。此外,我们的养幂实验表明,CBLB以细胞内联的方式抵抗效应CD8(+)T细胞应答。最后,我们表明CBLB的消融克服了HIF-1α在疫苗接种时延长CD8(+)T细胞的膨胀。因此,靶向CBLB的佐剂可能增强弱势患者中的全身真菌感染的灭活疫苗和免疫力。

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