Suppr超能文献

β亚基中一系列酪氨酸自身磷酸化激活了胰岛素受体的磷酸转移酶。

A cascade of tyrosine autophosphorylation in the beta-subunit activates the phosphotransferase of the insulin receptor.

作者信息

White M F, Shoelson S E, Keutmann H, Kahn C R

机构信息

Joslin Diabetes Center, Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts 02215.

出版信息

J Biol Chem. 1988 Feb 25;263(6):2969-80.

PMID:2449432
Abstract

We identified the major autophosphorylation sites in the insulin receptor and correlated their phosphorylation with the phosphotransferase activity of the receptor on synthetic peptides. The receptor, purified from Fao hepatoma cells on immobilized wheat germ agglutinin, undergoes autophosphorylation at several tyrosine residues in its beta-subunit; however, anti-phosphotyrosine antibody (alpha-PY) inhibited most of the phosphorylation by trapping the initial sites in an inactive complex. Exhaustive trypsin digestion of the inhibited beta-subunit yielded two peptides derived from the Tyr-1150 domain (Ullrich, A, Bell, J. R., Chen, E. Y., Herrera, R., Petruzzelli, L. M., Dull, T. J., Gray, A., Coussens, L., Liao, Y.-C., Tsubokawa, M., Mason, A., Seeburg, P. H., Grunfeld, C., Rosen, O. M., and Ramachandran, J. (1985) Nature 313, 756-761) called pY4 and pY5. Both peptides contained 2 phosphotyrosyl residues (2Tyr(P], one corresponding to Tyr-1146 and the other to Tyr-1150 or Tyr-1151. In the absence of the alpha-PY additional sites were phosphorylated. The C-terminal domain of the beta-subunit contained phosphotyrosine at Tyr-1316 and Tyr-1322. Removal of the C-terminal domain by mild trypsinolysis did not affect the phosphotransferase activity of the beta-subunit suggesting that these sites did not play a regulatory role. Full activation of the insulin receptor during in vitro assay correlated with the appearance of two phosphopeptides in the tryptic digest of the beta-subunit, pY1 and pY1a, that were inhibited by the alpha-PY. Structural analysis suggested that pY1 and pY1a were derived from the Tyr-1150 domain and contained 3 phosphotyrosyl residues (3Tyr(P] corresponding to Tyr-1146, Tyr-1150, and Tyr-1151. The phosphotransferase of the receptor that was phosphorylated in the presence of alpha-PY at 2 tyrosyl residues in the Tyr-1150 domain was not fully activated during kinase assays carried out with saturating substrate concentrations which inhibited further autophosphorylation. During insulin stimulation of the intact cell, the 3Tyr(P) form of the Tyr-1150 domain was barely detected, whereas the 2Tyr(P) form predominated. We conclude that 1) autophosphorylation of the insulin receptor begins by phosphorylation of Tyr-1146 and either Tyr-1150 or Tyr-1151; 2) progression of the cascade to phosphorylation of the third tyrosyl residue fully activates the phosphotransferase during in vitro assay; 3) in vivo, the 2Tyr(P) form predominates, suggesting that progression of the autophosphorylation cascade to the 3Tyr(P) form is regulated during insulin stimulation.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

我们确定了胰岛素受体中的主要自磷酸化位点,并将其磷酸化与受体对合成肽的磷酸转移酶活性相关联。从固定在麦芽凝集素上的Fao肝癌细胞中纯化的受体,在其β亚基的几个酪氨酸残基处发生自磷酸化;然而,抗磷酸酪氨酸抗体(α-PY)通过将初始位点捕获在无活性复合物中,抑制了大部分磷酸化。对受抑制的β亚基进行彻底的胰蛋白酶消化,产生了两个源自Tyr-1150结构域的肽段(乌尔里希,A,贝尔,J.R.,陈,E.Y.,埃雷拉,R.,彼得鲁泽利,L.M.,杜尔,T.J.,格雷,A.,库森斯,L.,廖,Y.-C.,津川,M.,梅森,A.,西伯尔格,P.H.,格伦费尔德,C.,罗森,O.M.,和拉马钱德兰,J.(1985年)《自然》313,756 - 761),称为pY4和pY5。两个肽段都含有2个磷酸酪氨酸残基(2Tyr(P],一个对应于Tyr-1146,另一个对应于Tyr-1150或Tyr-1151。在没有α-PY的情况下,其他位点被磷酸化。β亚基的C末端结构域在Tyr-1316和Tyr-1322处含有磷酸酪氨酸。通过温和的胰蛋白酶消化去除C末端结构域,并不影响β亚基的磷酸转移酶活性,这表明这些位点不发挥调节作用。在体外测定中,胰岛素受体的完全激活与β亚基胰蛋白酶消化物中出现的两个磷酸肽段pY1和pY1a相关,它们被α-PY抑制。结构分析表明,pY1和pY1a源自Tyr-1150结构域,含有3个磷酸酪氨酸残基(3Tyr(P],对应于Tyr-1146、Tyr-1150和Tyr-1151。在α-PY存在下,在Tyr-1150结构域的2个酪氨酸残基处被磷酸化的受体磷酸转移酶,在用饱和底物浓度进行激酶测定时未被完全激活,这抑制了进一步的自磷酸化。在完整细胞的胰岛素刺激过程中,几乎检测不到Tyr-1150结构域的3Tyr(P]形式,而2Tyr(P]形式占主导。我们得出结论:1)胰岛素受体的自磷酸化始于Tyr-1146以及Tyr-1150或Tyr-1151的磷酸化;2)在体外测定中,级联反应向第三个酪氨酸残基磷酸化的进展完全激活了磷酸转移酶;3)在体内,2Tyr(P]形式占主导,这表明在胰岛素刺激过程中,自磷酸化级联反应向3Tyr(P]形式的进展受到调节。(摘要截短于400字)

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验