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磷脂酰肌醇 3-激酶的 p110 delta 同工型通过调节记忆 T 细胞亚群的扩增和效应功能来控制次级抗利什曼原虫免疫的质量。

The p110 delta isoform of phosphatidylinositol 3-kinase controls the quality of secondary anti-Leishmania immunity by regulating expansion and effector function of memory T cell subsets.

机构信息

Department of Immunology, University of Manitoba, Winnipeg, Manitoba, Canada.

出版信息

J Immunol. 2010 Mar 15;184(6):3098-105. doi: 10.4049/jimmunol.0903177. Epub 2010 Feb 12.

DOI:10.4049/jimmunol.0903177
PMID:20154209
Abstract

We showed previously that mice with an inactivating knockin mutation in the p110delta isoform of PI3K (referred to as p110delta(D910A) mice) displayed enhanced primary resistance to Leishmania major despite mounting paradoxically impaired T cell responses. In this study, we show that p110delta(D910A) mice are impaired in their secondary (memory) anti-Leishmania responses in vitro and in vivo. Following secondary L. major challenge, p110delta(D910A) mice exhibited reduced delayed-type hypersensitivity response and weaker parasite control compared to wild-type mice. Using adoptive transfer experiments, we show that immune T cells from healed p110delta(D910A) mice were impaired in their proliferation and effector cytokine (IFN-gamma) responses upon L. major challenge. Interestingly, Leishmania-reactive T cells from healed p110delta(D910A) mice contain severalfold lower numbers of CD62L(lo) and CD62(hi) T cells than those from healed wild-type mice. The reduction in numbers of CD62L(lo) T cells in p110delta(D910A) mice is due to failure of their CD62L(hi) T cells to downregulate CD62L expression in response to L. major. Furthermore, although CD62L(lo) cells from p110delta(D910A) mice could home efficiently to lymphoid organs, their ability to exit these tissues and emigrate to cutaneous sites of infection was greatly impaired. Collectively, our data identify PI3K signaling as important events that control memory T cell subset differentiation, generation, effector function, and recruitment to cutaneous tissues and suggest that manipulating this pathway could provide means of enhancing desired memory T cell subset, response during vaccination, or both.

摘要

我们之前已经证明,PI3K 的 p110delta 同工型(p110delta(D910A) 小鼠)中存在失活敲入突变的小鼠,尽管 T 细胞反应异常受损,但对 Leishmania major 具有增强的原发性耐药性。在这项研究中,我们表明 p110delta(D910A) 小鼠在体外和体内的次级(记忆)抗 Leishmania 反应受损。在二次 L. major 挑战后,与野生型小鼠相比,p110delta(D910A) 小鼠表现出延迟型超敏反应减弱和寄生虫控制减弱。通过过继转移实验,我们表明,来自已治愈的 p110delta(D910A) 小鼠的免疫 T 细胞在受到 L. major 挑战时增殖和效应细胞因子(IFN-γ)反应受损。有趣的是,来自已治愈的 p110delta(D910A) 小鼠的 Leishmania 反应性 T 细胞中 CD62L(lo)和 CD62(hi)T 细胞的数量比来自已治愈的野生型小鼠少几个数量级。p110delta(D910A) 小鼠中 CD62L(lo)T 细胞数量减少是由于其 CD62L(hi)T 细胞在响应 L. major 时未能下调 CD62L 表达。此外,尽管来自 p110delta(D910A) 小鼠的 CD62L(lo)细胞能够有效地归巢到淋巴器官,但它们离开这些组织并迁移到感染皮肤部位的能力受到严重损害。总之,我们的数据表明 PI3K 信号传导作为控制记忆 T 细胞亚群分化、生成、效应功能和募集到皮肤组织的重要事件,并表明操纵该途径可能提供增强疫苗接种期间所需记忆 T 细胞亚群、反应的手段,或者两者兼而有之。

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