Weinmaster G, Pawson T
J Biol Chem. 1986 Jan 5;261(1):328-33.
A number of oncogenic viruses encode transforming proteins with protein kinase activities apparently specific for tyrosine residues. Recent evidence has raised questions as to the substrate specificity of these kinases in general and the physiological relevance of tyrosine phosphorylation in particular. The P130gag-fps transforming protein of Fujinami sarcoma virus (FSV) is strongly phosphorylated at 2 tyrosine residues in FSV-transformed cells of which 1 (Tyr-1073) is also the major site of P130gag-fps intermolecular autophosphorylation in vitro. We have investigated the specificity of the protein kinase activity intrinsic to FSV P130gag-fps by using site-directed mutagenesis to change the codon for Tyr-1073 to those for the other commonly phosphorylated hydroxyamino acids, serine and threonine. This approach has some advantages over the use of synthetic peptides to define protein kinase recognition sites in that the protein containing the altered target site can be expressed in intact cells. In addition it allows higher order as well as primary structure of the enzyme recognition site to be considered. Neither serine nor threonine were phosphorylated when substituted for tyrosine at position 1073 of P130gag-fps indicating a stringent specificity for tyrosine as a substrate of the P130gag-fps protein kinase autophosphorylating activity. Consistent with the suggestion that tyrosine phosphorylation is of functional significance we find that these and other FSV Tyr-1073 mutants have depressed enzymatic and oncogenic capacities.
许多致癌病毒编码具有蛋白激酶活性的转化蛋白,这些活性显然对酪氨酸残基具有特异性。最近的证据对这些激酶的底物特异性,尤其是酪氨酸磷酸化的生理相关性提出了疑问。 Fujinami肉瘤病毒(FSV)的P130gag-fps转化蛋白在FSV转化细胞中的2个酪氨酸残基上被强烈磷酸化,其中1个(Tyr-1073)也是体外P130gag-fps分子间自磷酸化的主要位点。我们通过定点诱变将Tyr-1073的密码子改变为其他常见磷酸化的羟基氨基酸丝氨酸和苏氨酸的密码子,研究了FSV P130gag-fps内在的蛋白激酶活性的特异性。这种方法比使用合成肽来定义蛋白激酶识别位点具有一些优势,因为含有改变的靶位点的蛋白可以在完整细胞中表达。此外,它允许考虑酶识别位点的高级结构以及一级结构。当在P130gag-fps的1073位用丝氨酸或苏氨酸替代酪氨酸时,两者均未被磷酸化,这表明酪氨酸作为P130gag-fps蛋白激酶自磷酸化活性的底物具有严格的特异性。与酪氨酸磷酸化具有功能意义的观点一致,我们发现这些以及其他FSV Tyr-1073突变体的酶活性和致癌能力均降低。