Song J S, Gomez J, Stancato L F, Rivera J
Section on Chemical Immunology, NIAMSD, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 1996 Oct 25;271(43):26962-70. doi: 10.1074/jbc.271.43.26962.
Aggregation of the high affinity receptor for IgE (FcepsilonRI) on the mucosal mast cell line, RBL-2H3, results in the rapid and persistent tyrosine phosphorylation of Vav. Immunoprecipitation of Vav from activated cells revealed co-immunoprecipitated phosphoproteins of molecular weights identical to the FcepsilonRI beta and gamma chains, and the former was reactive with antibody to the FcepsilonRI beta chain. Conversely, Western blots revealed the presence of p95 Vav in FcepsilonRI immunoprecipitates. The association of Vav and of Grb2 with the receptor was found to be regulated by aggregation of the receptor, and the interaction of Vav with the FcepsilonRI was localized to the gamma chain. To gain insight on the signaling pathway in which Vav participates, we investigated the in vivo associations of Vav with other molecules. A reducible chemical cross-linking agent was used to covalently maintain protein interactions under nonreducing conditions. A fraction of Vav increased in mass to form a complex of >300 kDa in molecular mass. Under reducing conditions the cross-linked Vav immunoprecipitates showed the presence of Grb2, Raf-1, and p42(mapk) (ERK2). In vitro kinase assays of Raf-1 activity associated with Vav revealed that this complex had an activity greater than that of Raf-1 derived from nonactivated cells, and aggregation of the FcepsilonRI did not modulate this activity. In contrast, aggregation of the FcepsilonRI increased the total Raf-1 activity by 2-5-fold. These results demonstrate that Vav associates constitutively with components of the mitogen-activated protein kinase pathway to form an active multimeric signaling complex whose in vivo activity and associations may be directed by aggregation of the FcepsilonRI. The findings of this study may also be relevant to other members of the immune recognition receptor family that share the T-cell antigen receptor zeta/gamma chains.
黏膜肥大细胞系RBL - 2H3上IgE高亲和力受体(FcepsilonRI)的聚集导致Vav迅速且持续的酪氨酸磷酸化。从活化细胞中免疫沉淀Vav,发现共免疫沉淀的磷蛋白分子量与FcepsilonRIβ和γ链相同,且前者与抗FcepsilonRIβ链抗体反应。相反,蛋白质印迹显示FcepsilonRI免疫沉淀中有p95 Vav存在。发现Vav和Grb2与该受体的结合受受体聚集调节,且Vav与FcepsilonRI的相互作用定位于γ链。为深入了解Vav参与的信号通路,我们研究了Vav与其他分子在体内的结合情况。使用一种可还原的化学交联剂在非还原条件下共价维持蛋白质相互作用。一部分Vav质量增加,形成分子量大于300 kDa的复合物。在还原条件下,交联的Vav免疫沉淀显示存在Grb2、Raf - 1和p42(mapk)(ERK2)。与Vav相关的Raf - 1活性的体外激酶分析表明,该复合物的活性大于未活化细胞来源的Raf - 1,且FcepsilonRI的聚集不调节此活性。相反,FcepsilonRI的聚集使总Raf - 1活性增加2 - 5倍。这些结果表明,Vav与丝裂原活化蛋白激酶途径的组分组成性结合,形成一个活性多聚体信号复合物,其体内活性和结合可能由FcepsilonRI的聚集引导。本研究结果可能也与共享T细胞抗原受体ζ/γ链的免疫识别受体家族的其他成员相关。