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SHIP1在恒定自然杀伤T细胞发育及功能中的作用

Role of SHIP1 in Invariant NKT Cell Development and Functions.

作者信息

Anderson Courtney K, Salter Alexander I, Toussaint Leon E, Reilly Emma C, Fugère Céline, Srivastava Neetu, Kerr William G, Brossay Laurent

机构信息

Department of Molecular Microbiology & Immunology, Division of Biology and Medicine, Brown University, Providence, RI 02912.

Departments of Pediatrics and Microbiology & Immunology, SUNY Upstate Medical University, Syracuse, NY 13210.

出版信息

J Immunol. 2015 Sep 1;195(5):2149-2156. doi: 10.4049/jimmunol.1500567. Epub 2015 Jul 31.

Abstract

SHIP1 is a 5'-inositol phosphatase known to negatively regulate the signaling product of the PI3K pathway, phosphatidylinositol (3-5)-trisphosphate. SHIP1 is recruited to a large number of inhibitory receptors expressed on invariant NK (iNKT) cells. We hypothesized that SHIP1 deletion would have major effects on iNKT cell development by altering the thresholds for positive and negative selection. Germline SHIP1 deletion has been shown to affect T cells as well as other immune cell populations. However, the role of SHIP1 on T cell function has been controversial, and its participation on iNKT cell development and function has not been examined. We evaluated the consequences of SHIP1 deletion on iNKT cells using germline-deficient mice, chimeric mice, and conditionally deficient mice. We found that T cell and iNKT cell development are impaired in germline-deficient animals. However, this phenotype can be rescued by extrinsic expression of SHIP1. In contrast, SHIP1 is required cell autonomously for optimal iNKT cell cytokine secretion. This suggests that SHIP1 calibrates the threshold of iNKT cell reactivity. These data further our understanding of how iNKT cell activation is regulated and provide insights into the biology of this unique cell lineage.

摘要

SHIP1是一种5'-肌醇磷酸酶,已知其对PI3K途径的信号产物磷脂酰肌醇(3-5)-三磷酸起负调控作用。SHIP1被招募到大量在不变自然杀伤(iNKT)细胞上表达的抑制性受体。我们推测,SHIP1缺失会通过改变阳性和阴性选择的阈值对iNKT细胞发育产生重大影响。种系SHIP1缺失已被证明会影响T细胞以及其他免疫细胞群体。然而,SHIP1对T细胞功能的作用一直存在争议,其在iNKT细胞发育和功能中的参与情况尚未得到研究。我们使用种系缺陷小鼠、嵌合小鼠和条件性缺陷小鼠评估了SHIP1缺失对iNKT细胞的影响。我们发现,种系缺陷动物的T细胞和iNKT细胞发育受损。然而,这种表型可以通过SHIP1的外源性表达得到挽救。相比之下,SHIP1是iNKT细胞最佳细胞因子分泌所必需的细胞自主性因素。这表明SHIP1校准了iNKT细胞反应性的阈值。这些数据进一步加深了我们对iNKT细胞激活如何被调控的理解,并为这一独特细胞谱系的生物学特性提供了见解。

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