自磷酸化
胰岛素受体
酪氨酸
酪氨酸激酶
受体酪氨酸激酶
ROR1型
生物化学
化学
磷酸酪氨酸结合域
氨基酸
胰岛素
蛋白激酶结构域
细胞生物学
受体
激酶
SH2域
生物
血小板源性生长因子受体
内分泌学
蛋白激酶A
生长因子
胰岛素抵抗
基因
突变体
作者
Bing Zhang,JM Tavaré,L Ellis,R A Roth
标识
DOI:10.1016/s0021-9258(17)35272-9
摘要
Autophosphorylation of the insulin receptor has been previously documented to activate the phosphotransferase activity of the receptor from 20-to 200-fold.Biochemical studies have correlated activation of the receptor kinase with the autophosphorylation of tyrosines residues 1158,1162, and 1163.To further assess the role of these 3 tyrosines in the activation process, we have studied the effect of their substitution with either the neutral amino acids phenylalanine or alanine o r with the negatively charged amino acids aspartate and glutamate.In several other proteins, it has been shown that substitution of phosphorylated residues with negatively charged amino acids can mimic the phosphorylation state of the protein.In agreement with previous studies, tyrosines at positions 1162 and 1163 were found to be crucial in the kinase activation process.In contrast, mutant receptors with tyrosine 1158 changed to either phenylalanine or aspartate were still activated to the same extent as the wild-type receptor.An increased basal exogenous kinase activity was observed upon replacement of tyrosines 1162 and 1163 with, in increasing order of potency, aspartate = glutamate < alanine = phenylalanine.These results indicate that phosphorylation of tyrosines 116211 163 but not 1158 play a critical role in the activation of the receptor kinase and that the mechanism of activation of the receptor kinase by autophosphorylation is more complex than just an introduction of a cluster of negative charges in this region of the receptor.In addition, the finding of an increased basal kinase activity in receptors lacking tyrosines 1162 and 1163 could explain the reported ability of this receptor to mediate certain biological responses.The insulin receptor (IR)' is a disulfide-linked heterotet-DK 41765 (to R.A.R.), 34926 (to R.
科研通智能强力驱动
Strongly Powered by AbleSci AI