Nada S, Okada M, MacAuley A, Cooper J A, Nakagawa H
Division of Protein Metabolism, Osaka University, Japan.
Nature. 1991 May 2;351(6321):69-72. doi: 10.1038/351069a0.
The protein-tyrosine kinase activity of the proto-oncogene product p60c-src is negatively regulated by the phosphorylation of a tyrosine residue close to the C terminus, tyrosine 527. The phosphorylation might be catalysed by a so-far-unidentified tyrosine kinase, distinct from p60c-src. Recently we purified a protein-tyrosine kinase that specifically phosphorylates tyrosine 527 of p60c-src from neonatal rat brain. We have now confirmed the specificity of this enzyme by using a mutant p60c-src that has a phenylalanine instead of tyrosine 527, and cloned a complementary DNA that encodes the enzyme. The enzyme is similar to kinases of the src family in that it has two conserved regions, Src-homology regions 2 and 3, upstream of a tyrosine kinase domain. The amino-acid identity of each region is no more than 47%, however, and the enzyme lacks phosphorylation sites corresponding to tyrosines 416 and 527 of p60c-src and has no myristylation signal. These results suggest that this protein-tyrosine kinase, which might negatively regulate p60c-src, represents a new type of tyrosine kinase.
原癌基因产物p60c-src的蛋白酪氨酸激酶活性受到靠近C末端的酪氨酸残基(酪氨酸527)磷酸化的负调控。这种磷酸化可能由一种迄今尚未鉴定的酪氨酸激酶催化,该激酶与p60c-src不同。最近,我们从新生大鼠脑中纯化了一种蛋白酪氨酸激酶,它能特异性地磷酸化p60c-src的酪氨酸527。现在我们通过使用一种具有苯丙氨酸而非酪氨酸527的突变型p60c-src证实了这种酶的特异性,并克隆了编码该酶的互补DNA。该酶与src家族的激酶相似,因为它在酪氨酸激酶结构域上游有两个保守区域,即Src同源区域2和3。然而,每个区域的氨基酸同一性不超过47%,并且该酶缺乏与p60c-src的酪氨酸416和527相对应的磷酸化位点,也没有肉豆蔻酰化信号。这些结果表明,这种可能对p60c-src起负调控作用的蛋白酪氨酸激酶代表了一种新型的酪氨酸激酶。