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MAIR-I第258位和270位残基的酪氨酸对嗜碱性白血病RBL-2H3脱颗粒抑制作用的需求。

Requirement of the tyrosines at residues 258 and 270 of MAIR-I in inhibitory effect on degranulation from basophilic leukemia RBL-2H3.

作者信息

Okoshi Yasushi, Tahara-Hanaoka Satoko, Nakahashi Chigusa, Honda Shin-ichiro, Miyamoto Akitomo, Kojima Hiroshi, Nagasawa Toshiro, Shibuya Kazuko, Shibuya Akira

机构信息

Department of Immunology, Institute of Basic Medical Sciences, University of Tsukuba, Japan.

出版信息

Int Immunol. 2005 Jan;17(1):65-72. doi: 10.1093/intimm/dxh187. Epub 2004 Nov 29.

Abstract

Mast cells and basophils express the high affinity receptor for IgE (FcepsilonRI) and play a central role for IgE-associated immediate hypersensitivity reactions and allergic disorders. Cross-linking of FcepsilonRI-bound IgE with multivalent antigen initiates the activation of mast cells and basophils, resulting in the degranulation from these cells. We have recently identified a novel inhibitory receptor, myeloid-associated immunoglobulin-like receptor (MAIR)-I, which is expressed on mast cells as well as other myeloid cell lineages. Co-ligation of FcepsilonRI and MAIR-I inhibits IgE-mediated degranulation from mast cells. However, MAIR-I-mediated signaling pathways involved in the inhibition remain undetermined. Here, we demonstrate that the transfectant of rat basophil leukemia RBL-2H3 expressing wild-type MAIR-I is tyrosine phosphorylated and recruits SHP-1 and SHIP upon cross-linking of MAIR-I. By using RBL-2H3 transfectants expressing variable mutant MAIR-I at Y233, Y258, Y270 and/or Y299, we further demonstrate that both Y258 and Y270, but not Y233 and Y299, were phosphorylated and were essentially required for inhibition of IgE-mediated degranulation from the RBL-2H3 transfectant.

摘要

肥大细胞和嗜碱性粒细胞表达IgE的高亲和力受体(FcepsilonRI),并在IgE相关的速发型超敏反应和过敏性疾病中发挥核心作用。FcepsilonRI结合的IgE与多价抗原的交联引发肥大细胞和嗜碱性粒细胞的活化,导致这些细胞脱颗粒。我们最近鉴定了一种新型抑制性受体,即髓系相关免疫球蛋白样受体(MAIR)-I,它在肥大细胞以及其他髓系细胞谱系上表达。FcepsilonRI和MAIR-I的共连接抑制了肥大细胞中IgE介导的脱颗粒。然而,参与这种抑制作用的MAIR-I介导的信号通路仍未确定。在此,我们证明表达野生型MAIR-I的大鼠嗜碱性粒细胞白血病RBL-2H3转染子在MAIR-I交联后发生酪氨酸磷酸化,并募集SHP-1和SHIP。通过使用在Y233、Y258、Y270和/或Y299处表达可变突变体MAIR-I的RBL-2H3转染子,我们进一步证明Y258和Y270均发生磷酸化,并且对于抑制RBL-2H3转染子中IgE介导的脱颗粒至关重要,而Y233和Y299则不然。

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