Chen T, Repetto B, Chizzonite R, Pullar C, Burghardt C, Dharm E, Zhao Z, Carroll R, Nunes P, Basu M, Danho W, Visnick M, Kochan J, Waugh D, Gilfillan A M
Department of Inflammation and Autoimmune Diseases, Hoffmann-La Roche Inc., Nutley, New Jersey 07110, USA.
J Biol Chem. 1996 Oct 11;271(41):25308-15. doi: 10.1074/jbc.271.41.25308.
To examine the characteristics of the interaction of the FcepsilonRIgamma ITAM with the SH2 domains of p72(syk), the binding of an 125I-labeled dual phosphorylated FcepsilonRIgamma ITAM-based peptide to the p72(syk) SH2 domains was monitored utilizing a novel scintillation proximity based assay. The Kd for this interaction, determined from the saturation binding isotherm, was 1.4 nM. This high affinity binding was reflected in the rapid rate of association for the peptide binding to the SH2 domains. Competition studies utilizing a soluble C-terminal SH2 domain knockout and N-terminal SH2 domain knockouts revealed that both domains contribute cooperatively to the high affinity binding. Unlabeled dual phosphorylated peptide competed with the 125I-labeled peptide for binding to the dual p72(syk) SH2 domains with an IC50 value of 4.8 nM. Monophosphorylated 24-mer FcepsilonRIgamma ITAM peptides, and phosphotyrosine also competed for binding, but with substantially higher IC50 values. This, and other data discussed, suggest that high affinity binding requires both tyrosine residues to be phosphorylated and that the preferred binding orientation of the ITAM is such that the N-terminal phosphotyrosine occupies the C-terminal SH2 domain and the C-terminal phosphotyrosine occupies the N-terminal SH2 domain.
为了研究FcepsilonRIγ免疫受体酪氨酸激活基序(ITAM)与p72(syk)的SH2结构域之间相互作用的特征,利用一种基于新型闪烁邻近的检测方法监测了125I标记的基于双磷酸化FcepsilonRIγ ITAM的肽与p72(syk)SH2结构域的结合。根据饱和结合等温线确定,这种相互作用的解离常数(Kd)为1.4 nM。这种高亲和力结合反映在肽与SH2结构域结合的快速缔合速率上。利用可溶性C末端SH2结构域敲除和N末端SH2结构域敲除进行的竞争研究表明,两个结构域协同作用对高亲和力结合有贡献。未标记的双磷酸化肽与125I标记的肽竞争结合双p72(syk)SH2结构域,半数抑制浓度(IC50)值为4.8 nM。单磷酸化的24聚体FcepsilonRIγ ITAM肽和磷酸酪氨酸也竞争结合,但IC50值要高得多。这一点以及所讨论的其他数据表明,高亲和力结合要求两个酪氨酸残基都被磷酸化,并且ITAM的优选结合方向是N末端磷酸酪氨酸占据C末端SH2结构域,C末端磷酸酪氨酸占据N末端SH2结构域。