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血小板受体不可逆失活的双ITAM介导的蛋白水解途径:去除FcγRIIa的免疫受体酪氨酸活化基序

Dual ITAM-mediated proteolytic pathways for irreversible inactivation of platelet receptors: de-ITAM-izing FcgammaRIIa.

作者信息

Gardiner Elizabeth E, Karunakaran Denuja, Arthur Jane F, Mu Fi-Tjen, Powell Maree S, Baker Ross I, Hogarth P Mark, Kahn Mark L, Andrews Robert K, Berndt Michael C

机构信息

Department of Immunology, Monash University, Melbourne, Australia.

出版信息

Blood. 2008 Jan 1;111(1):165-74. doi: 10.1182/blood-2007-04-086983. Epub 2007 Sep 11.

Abstract

Collagen binding to glycoprotein VI (GPVI) induces signals critical for platelet activation in thrombosis. Both ligand-induced GPVI signaling through its coassociated Fc-receptor gamma-chain (FcRgamma) immunoreceptor tyrosine-activation motif (ITAM) and the calmodulin inhibitor, W7, dissociate calmodulin from GPVI and induce metalloproteinase-mediated GPVI ectodomain shedding. We investigated whether signaling by another ITAM-bearing receptor on platelets, FcgammaRIIa, also down-regulates GPVI expression. Agonists that signal through FcgammaRIIa, the mAbs VM58 or 14A2, potently induced GPVI shedding, inhibitable by the metalloproteinase inhibitor, GM6001. Unexpectedly, FcgammaRIIa also underwent rapid proteolysis in platelets treated with agonists for FcgammaRIIa (VM58/14A2) or GPVI/FcRgamma (the snake toxin, convulxin), generating an approximate 30-kDa fragment. Immunoprecipitation/pull-down experiments showed that FcgammaRIIa also bound calmodulin and W7 induced FcgammaRIIa cleavage. However, unlike GPVI, the approximate 30-kDa FcgammaRIIa fragment remained platelet associated, and proteolysis was unaffected by GM6001 but was inhibited by a membrane-permeable calpain inhibitor, E64d; consistent with this, micro-calpain cleaved an FcgammaRIIa tail-fusion protein at (222)Lys/(223)Ala and (230)Gly/(231)Arg, upstream of the ITAM domain. These findings suggest simultaneous activation of distinct extracellular (metalloproteinase-mediated) and intracellular (calpain-mediated) proteolytic pathways irreversibly inactivating platelet GPVI/FcRgamma and FcgammaRIIa, respectively. Activation of both pathways was observed with immunoglobulin from patients with heparin-induced thrombocytopenia (HIT), suggesting novel mechanisms for platelet dysfunction by FcgammaRIIa after immunologic insult.

摘要

胶原蛋白与糖蛋白VI(GPVI)结合可诱导对血栓形成中血小板活化至关重要的信号。配体诱导的GPVI通过其共相关的Fc受体γ链(FcRγ)免疫受体酪氨酸激活基序(ITAM)发出信号,以及钙调蛋白抑制剂W7,都会使钙调蛋白与GPVI解离,并诱导金属蛋白酶介导的GPVI胞外域脱落。我们研究了血小板上另一种带有ITAM的受体FcγRIIa发出的信号是否也会下调GPVI的表达。通过FcγRIIa发出信号的激动剂,单克隆抗体VM58或14A2,可有效诱导GPVI脱落,金属蛋白酶抑制剂GM6001可抑制这种脱落。出乎意料的是,在用FcγRIIa(VM58/14A2)或GPVI/FcRγ(蛇毒素,convulxin)的激动剂处理的血小板中,FcγRIIa也会迅速发生蛋白水解,产生一个约30 kDa的片段。免疫沉淀/下拉实验表明,FcγRIIa也与钙调蛋白结合,W7可诱导FcγRIIa裂解。然而,与GPVI不同,约30 kDa的FcγRIIa片段仍与血小板相关,并且蛋白水解不受GM6001影响,但被膜通透性钙蛋白酶抑制剂E64d抑制;与此一致的是,微钙蛋白酶在ITAM结构域上游的(222)Lys/(223)Ala和(230)Gly/(231)Arg处切割FcγRIIa尾融合蛋白。这些发现表明,不同的细胞外(金属蛋白酶介导的)和细胞内(钙蛋白酶介导的)蛋白水解途径同时被激活,分别不可逆地使血小板GPVI/FcRγ和FcγRIIa失活。在肝素诱导的血小板减少症(HIT)患者的免疫球蛋白中观察到这两种途径的激活,提示免疫损伤后FcγRIIa导致血小板功能障碍的新机制。

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