LaFevre-Bernt M, Sicheri F, Pico A, Porter M, Kuriyan J, Miller W T
Department of Physiology and Biophysics, School of Medicine, State University of New York at Stony Brook, Stony Brook, New York 11794, USA.
J Biol Chem. 1998 Nov 27;273(48):32129-34. doi: 10.1074/jbc.273.48.32129.
Intramolecular interactions between the Src homology domains (SH2 and SH3) and the catalytic domains of Src family kinases result in repression of catalytic activity. The crystal structure of the Src family kinase Hck, with its regulatory domains intact, has been solved. It predicts that a conserved residue, Trp260, at the end of the linker between the SH2 and the catalytic domains plays an important role in regulation by the SH3 and SH2 domains. We have mutated this residue and compared the activities of C-terminally phosphorylated wild type Hck and W260A Hck. The W260A mutant has a higher specific activity than wild type Hck. The W260A mutant requires autophosphorylation at Tyr416 for full activity, but it is not activated by ligand binding to the SH3 or SH2 domains. This mutation also changes the accessibility of the SH2 and SH3 domains to their cognate peptide ligands. Our results indicate that Trp260 plays a critical role in the coupling of the regulatory domains to the catalytic domain, as well as in positioning the ligand binding surfaces.
Src同源结构域(SH2和SH3)与Src家族激酶的催化结构域之间的分子内相互作用导致催化活性受到抑制。Src家族激酶Hck的晶体结构已被解析,其调节结构域保持完整。研究预测,位于SH2和催化结构域之间连接区末端的保守残基Trp260在SH3和SH2结构域的调节中起重要作用。我们对该残基进行了突变,并比较了C末端磷酸化的野生型Hck和W260A Hck的活性。W260A突变体的比活性高于野生型Hck。W260A突变体需要在Tyr416处进行自身磷酸化才能达到完全活性,但它不会因配体与SH3或SH2结构域结合而被激活。这种突变还改变了SH2和SH3结构域对其同源肽配体的可及性。我们的结果表明,Trp260在调节结构域与催化结构域的偶联以及配体结合表面的定位中起着关键作用。