Marengere L E, Songyang Z, Gish G D, Schaller M D, Parsons J T, Stern M J, Cantley L C, Pawson T
Division of Molecular and Developmental Biology, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario, Canada.
Nature. 1994 Jun 9;369(6480):502-5. doi: 10.1038/369502a0.
Many intracellular targets of protein-tyrosine kinases possess Src homology 2 (SH2) domains that directly recognize phosphotyrosine-containing sites on autophosphorylated growth factor receptors and cytoplasmic proteins, and thereby mediate the activation of biochemical signalling pathways. SH2 domains possess relatively well conserved residues that form the phosphotyrosine-binding pocket, and more variable residues that are implicated in determining binding specificity by recognition of the three amino acids carboxy-terminal to phosphotyrosine (the +1 to +3 positions). One such residue, occupying the EF1 position of the +3-binding pocket, is a Thr in the SH2 domain of the Src tyrosine kinase, but is predicted to be a Trp in the SH2 domain of the Sem-5/drk/Grb2 adaptor protein. Here we report that changing this residue in the Src SH2 domain from Thr to Trp switches its selectivity to resemble that of the Sem-5/drk/Grb2 SH2 domain. Furthermore, this mutant Src SH2 domain effectively substitutes for the SH2 domain of the Sem-5 protein in activation of the Ras pathway in vivo. These results identify a residue that can modify SH2 selectivity, and indicate that the biological activity of an SH2 domain correlates with its binding specificity.
蛋白酪氨酸激酶的许多细胞内靶点都具有Src同源2(SH2)结构域,这些结构域可直接识别自磷酸化生长因子受体和细胞质蛋白上含磷酸酪氨酸的位点,从而介导生化信号通路的激活。SH2结构域具有相对保守的残基,形成磷酸酪氨酸结合口袋,还有更多可变残基,这些残基通过识别磷酸酪氨酸羧基末端的三个氨基酸(+1至+3位)来决定结合特异性。其中一个占据+3结合口袋EF1位置的残基,在Src酪氨酸激酶的SH2结构域中是苏氨酸,但预计在Sem-5/drk/Grb2衔接蛋白的SH2结构域中是色氨酸。我们在此报告,将Src SH2结构域中的这个残基从苏氨酸变为色氨酸,会使其选择性发生改变,类似于Sem-5/drk/Grb2 SH2结构域的选择性。此外,这种突变的Src SH2结构域在体内激活Ras途径时可有效替代Sem-5蛋白的SH2结构域。这些结果确定了一个可改变SH2选择性的残基,并表明SH2结构域的生物学活性与其结合特异性相关。