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非T细胞激活连接蛋白通过抑制T细胞激活连接蛋白对SHIP1的募集来促进肥大细胞存活。

Non-T cell activation linker promotes mast cell survival by dampening the recruitment of SHIP1 by linker for activation of T cells.

作者信息

Roget Karine, Malissen Marie, Malbec Odile, Malissen Bernard, Daëron Marc

机构信息

Institut Pasteur, Département d'Immunologie, Unité d'Allergologie Moléculaire et Cellulaire, Paris, France.

出版信息

J Immunol. 2008 Mar 15;180(6):3689-98. doi: 10.4049/jimmunol.180.6.3689.

DOI:10.4049/jimmunol.180.6.3689
PMID:18322174
Abstract

The linker for activation of T cells (LAT) and the non-T cell activation linker (NTAL) are two transmembrane adapters which organize IgE receptor (FcepsilonRI) signaling complexes in mast cells. LAT positively regulates, whereas NTAL negatively regulates mast cell activation. We previously found that the four distal tyrosines of LAT can generate negative signals. We show here that two of these tyrosines provide two binding sites for SHIP1, that LAT recruits SHIP1 in vivo, and that SHIP1 recruitment is enhanced in NTAL-deficient cells. We show that NTAL negatively regulates mast cell activation by decreasing the recruitment, by LAT, of molecules involved in FcepsilonRI-dependent positive signaling. We show that NTAL also decreases the recruitment of SHIP1 by LAT, leading to an increased phosphorylation of the antiapoptotic molecule Akt, and positively regulates mast cell survival. We finally show that the positive effect of NTAL on Akt phosphorylation and mast cell survival requires LAT. Our data thus document the mechanisms by which LAT and NTAL can generate both positive and negative signals which differentially regulate mast cell activation and survival. They also provide molecular bases for the recruitment of SHIP1 in FcepsilonRI signaling complexes. SHIP1 is a major negative regulator of mast cell activation and, hence, of allergic reactions.

摘要

T细胞活化连接蛋白(LAT)和非T细胞活化连接蛋白(NTAL)是两种跨膜衔接蛋白,它们在肥大细胞中组织IgE受体(FcepsilonRI)信号复合物。LAT起正调节作用,而NTAL起负调节肥大细胞活化的作用。我们之前发现LAT的四个远端酪氨酸可产生负信号。我们在此表明,其中两个酪氨酸为SHIP1提供了两个结合位点,LAT在体内募集SHIP1,并且在NTAL缺陷细胞中SHIP1的募集增强。我们表明,NTAL通过减少LAT对FcepsilonRI依赖性正信号传导相关分子的募集来负调节肥大细胞活化。我们表明,NTAL还减少了LAT对SHIP1的募集,导致抗凋亡分子Akt的磷酸化增加,并正调节肥大细胞存活。我们最终表明,NTAL对Akt磷酸化和肥大细胞存活的正向作用需要LAT。因此,我们的数据记录了LAT和NTAL产生正负信号的机制,这些信号差异调节肥大细胞的活化和存活。它们还为SHIP1在FcepsilonRI信号复合物中的募集提供了分子基础。SHIP1是肥大细胞活化以及因此也是过敏反应的主要负调节因子。

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Non-T cell activation linker promotes mast cell survival by dampening the recruitment of SHIP1 by linker for activation of T cells.非T细胞激活连接蛋白通过抑制T细胞激活连接蛋白对SHIP1的募集来促进肥大细胞存活。
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