Gonfloni S, Williams J C, Hattula K, Weijland A, Wierenga R K, Superti-Furga G
European Molecular Biology Laboratory, Meyerhofstrasse 1, D-69117 Heidelberg, Germany.
EMBO J. 1997 Dec 15;16(24):7261-71. doi: 10.1093/emboj/16.24.7261.
The crystal structures of the regulated Src and Hck tyrosine kinases show intramolecular interactions between the phosphorylated tail and the SH2 domain as well as between the SH3 domain, the SH2-catalytic domain linker (SH2-CD linker) and the catalytic domain. The relative contribution of these interactions to regulation of activity is poorly understood. Mutational analysis of Src and Lck revealed that interaction of the SH2-CD linker with the SH3 domain is crucial for regulation. Moreover, three sites of interaction of the linker with the catalytic domain, one at the beginning (Trp260) and two at the back of the small lobe, opposite the catalytic cleft (beta2/beta3 loop; alphaC/beta4 loop), impinge on Src activity. Other activating mutations map to the front of the catalytic domain in the loop preceding the alphaC-helix (beta3/alphaC loop). SH2-CD linker mutants are deregulated in mammalian cells but transform fibroblasts weakly, suggesting that the linker may bind cellular components. Interpretation of our results on the basis of the crystal structure of Src favours a model in which the correctly positioned SH2-CD linker exerts an inhibitory function on catalysis of Src family members by facilitating displacement of the alphaC-helix. This study may provide a template for the generation of deregulated versions of other protein kinases.
受调控的Src和Hck酪氨酸激酶的晶体结构显示,磷酸化尾部与SH2结构域之间以及SH3结构域、SH2-催化结构域连接区(SH2-CD连接区)和催化结构域之间存在分子内相互作用。这些相互作用对活性调节的相对贡献尚不清楚。对Src和Lck的突变分析表明,SH2-CD连接区与SH3结构域的相互作用对调节至关重要。此外,连接区与催化结构域的三个相互作用位点,一个在起始处(Trp260),两个在小结构域后部,与催化裂隙相对(β2/β3环;αC/β4环),影响Src活性。其他激活突变位于催化结构域前部,在αC-螺旋之前的环中(β3/αC环)。SH2-CD连接区突变体在哺乳动物细胞中不受调控,但对成纤维细胞的转化作用较弱,这表明连接区可能与细胞成分结合。根据Src的晶体结构对我们的结果进行解释,支持一种模型,即正确定位的SH2-CD连接区通过促进αC-螺旋的移位,对Src家族成员的催化发挥抑制作用。这项研究可能为生成其他蛋白激酶的失控版本提供一个模板。