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两个SH2结构域均参与了SHP-1与表皮生长因子受体的相互作用,但无法赋予SHP-1/SHP-2嵌合体受体导向活性。

Both SH2 domains are involved in interaction of SHP-1 with the epidermal growth factor receptor but cannot confer receptor-directed activity to SHP-1/SHP-2 chimera.

作者信息

Tenev T, Keilhack H, Tomic S, Stoyanov B, Stein-Gerlach M, Lammers R, Krivtsov A V, Ullrich A, Böhmer F D

机构信息

Max-Planck Society, Research Unit "Molecular Cell Biology," Medical Faculty, Friedrich-Schiller University, Drackendorfer Str. 1, D-07747 Jena, Germany.

出版信息

J Biol Chem. 1997 Feb 28;272(9):5966-73. doi: 10.1074/jbc.272.9.5966.

Abstract

The previously demonstrated functional and physical interaction of the SH2 domain protein-tyrosine phosphatase SHP-1 with the epidermal growth factor (EGF) receptor (Tomic, S., Greiser, U., Lammers, R., Kharitonenkov, A., Imyanitov, E., Ullrich, A., and Böhmer, F. D. (1995) J. Biol. Chem. 270, 21277-21284) was investigated with respect to the involved structural elements of SHP-1. Various mutants of SHP-1 were transiently expressed in 293 or COS-7 cells and analyzed for their capacity to associate with immobilized autophosphorylated EGF receptor in vitro and to dephosphorylate coexpressed EGF receptor in intact cells. Inactivating point mutation of the C-terminal SH2 domain reduced the association weakly, point mutation of the N-terminal SH2 domain reduced association strongly and the respective double mutation abolished association totally. The capacity of SHP-1 to dephosphorylate coexpressed EGF receptor was impaired by all point mutations. Truncation of the N-terminal or of both SH2 domains strongly reduced or abolished association, respectively, but the truncated SHP-1 derivatives still dephosphorylated coexpressed EGF receptor effectively. Various chimeric protein-tyrosine phosphatases constructed from SHP-1 and the closely homologous SHP-2 dephosphorylated the EGF receptor when they contained the catalytic domain of SHP-1. As native SHP-2, the chimera lacked activity toward the receptor when they contained the catalytic domain of SHP-2, despite their capacity to associate with the receptor and to dephosphorylate an artificial phosphopeptide. We conclude that the differential interaction of SHP-1 and SHP-2 with the EGF receptor is due to the specificity of the respective catalytic domains rather than to the specificity of the SH2 domains. Functional interaction of native SHP-1 with the EGF receptor requires association mediated by both SH2 domains.

摘要

先前已证明SH2结构域蛋白酪氨酸磷酸酶SHP-1与表皮生长因子(EGF)受体存在功能和物理相互作用(托米奇,S.,格雷泽,U.,拉默斯,R.,卡里托年科夫,A.,伊米亚尼托夫,E.,乌尔里希,A.,和伯默尔,F.D.(1995年)《生物化学杂志》270,21277 - 21284),针对SHP-1所涉及的结构元件进行了研究。SHP-1的各种突变体在293或COS-7细胞中瞬时表达,并分析它们在体外与固定化的自磷酸化EGF受体结合的能力,以及在完整细胞中使共表达的EGF受体去磷酸化的能力。C末端SH2结构域的失活点突变使结合能力略有降低,N末端SH2结构域的点突变使结合能力大幅降低,相应的双突变则完全消除了结合。所有点突变均损害了SHP-1使共表达的EGF受体去磷酸化的能力。N末端或两个SH2结构域的截短分别强烈降低或消除了结合,但截短的SHP-1衍生物仍能有效地使共表达的EGF受体去磷酸化。由SHP-1和密切同源的SHP-2构建的各种嵌合蛋白酪氨酸磷酸酶,当它们包含SHP-1的催化结构域时,能使EGF受体去磷酸化。与天然SHP-2一样,嵌合体当包含SHP-2的催化结构域时,尽管它们有与受体结合并使人工磷酸肽去磷酸化的能力,但对受体缺乏活性。我们得出结论,SHP-1和SHP-2与EGF受体的差异相互作用是由于各自催化结构域的特异性,而非SH2结构域的特异性。天然SHP-1与EGF受体的功能相互作用需要由两个SH2结构域介导的结合。

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