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Physiological Requirement for Both SH2 Domains for Phospholipase C-γ1 Function and Interaction with Platelet-Derived Growth Factor Receptors

机译:磷脂酶C-γ1功能和与血小板衍生生长因子受体相互作用的两个SH2域的生理需求

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摘要

Two approaches have been utilized to investigate the role of individual SH2 domains in growth factor activation of phospholipase C-γ1 (PLC-γ1). Surface plasmon resonance analysis indicates that the individual N-SH2 and C-SH2 domains are able to specifically recognize a phosphotyrosine-containing peptide corresponding to Tyr 1021 of the platelet-derived growth factor (PDGF) β receptor. To assess SH2 function in the context of the full-length PLC-γ1 molecule as well as within the intact cell, PLC-γ1 SH2 domain mutants, disabled by site-directed mutagenesis of the N-SH2 and/or C-SH2 domain(s), were expressed in Plcg1−/− fibroblasts. Under equilibrium incubation conditions (4°C, 40 min), the N-SH2 domain, but not the C-SH2 domain, was sufficient to mediate significant PLC-γ1 association with the activated PDGF receptor and PLC-γ1 tyrosine phosphorylation. When both SH2 domains in PLC-γ1 were disabled, the double mutant did not associate with activated PDGF receptors and was not tyrosine phosphorylated. However, no single SH2 mutant was able to mediate growth factor activation of Ca2+ mobilization or inositol 1,4,5-trisphosphate (IP3) formation. Subsequent kinetic experiments demonstrated that each single SH2 domain mutant was significantly impaired in its capacity to mediate rapid association with activated PDGF receptors and become tyrosine phosphorylated. Hence, when assayed under physiological conditions necessary to achieve a rapid biological response (Ca2+ mobilization and IP3 formation), both SH2 domains of PLC-γ1 are essential to growth factor responsiveness.
机译:已经采用了两种方法来研究单个SH2域在磷脂酶C-γ1(PLC-γ1)的生长因子激活中的作用。表面等离子体共振分析表明,各个N-SH2和C-SH2结构域能够特异性识别对应于血小板衍生生长因子(PDGF)β受体Tyr 1021的含磷酸酪氨酸的肽。为了评估全长PLC-γ1分子以及完整细胞内的SH2功能,PLC-γ1SH2域突变体被N-SH2和/或C-SH2结构域的定点诱变所禁用( s)在Plcg1 -/-成纤维细胞中表达。在平衡孵育条件下(4°C,40分钟),N-SH2结构域(而不是C-SH2结构域)足以介导与激活的PDGF受体和PLC-γ1酪氨酸磷酸化相关的显着PLC-γ1缔合。当PLC-γ1中的两个SH2域都被禁用时,双重突变体不与活化的PDGF受体缔合,也不被酪氨酸磷酸化。然而,没有单一的SH2突变体能够介导Ca 2 + 动员或肌醇1,4,5-三磷酸(IP3)形成的生长因子激活。随后的动力学实验表明,每个单个的SH2结构域突变体介导与活化的PDGF受体快速缔合并酪氨酸磷酸化的能力均显着受损。因此,当在实现快速生物学响应(Ca 2 + 动员和IP3形成)所必需的生理条件下进行分析时,PLC-γ1的两个SH2结构域对于生长因子响应性都是必不可少的。

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