Hakak Y, Martin G S
Department of Molecular and Cell Biology, University of California-Berkeley, Berkeley, California 94720-3204, USA.
Mol Cell Biol. 1999 Oct;19(10):6953-62. doi: 10.1128/MCB.19.10.6953.
The Src substrate p130(Cas) is a docking protein containing an SH3 domain, a substrate domain that contains multiple consensus SH2 binding sites, and a Src binding region. We have examined the possibility that Cas plays a role in the transcriptional activation of immediate early genes (IEGs) by v-Src. Transcriptional activation of IEGs by v-Src occurs through distinct transcriptional control elements such as the serum response element (SRE). An SRE transcriptional reporter was used to study the ability of Cas to mediate Src-induced SRE activation. Coexpression of v-Src and Cas led to a threefold increase in SRE-dependent transcription over the level induced by v-Src alone. Cas-dependent activation of the SRE was dependent on the kinase activity of v-Src and the Src binding region of Cas. Signaling to the SRE is promoted by a serine-rich region within Cas and inhibited by the Cas SH3 domain. Cas-dependent SRE activation was accompanied by an increase in the level of active Ras and in the activity of the mitogen-activated protein kinase (MAPK) Erk2; these changes were blocked by coexpression of dominant-negative mutants of the adapter protein Grb2. SRE activation was abrogated by coexpression of dominant-negative mutants of Ras, MAPK kinase (Mek1), and Grb2. Coexpression of Cas with v-Src enhanced the association of Grb2 with the adapter protein Shc and the protein tyrosine phosphatase Shp-2; coexpression of Shc or Shp-2 mutants significantly reduced SRE activation by Cas and v-Src. Cas-induced Grb2 association with Shp-2 and Shc may account for the Cas-dependent activation of the Ras/Mek/Erk pathway and SRE-dependent transcription. 14-3-3 proteins may also play a role in Cas-mediated signaling to the SRE. Overexpression of Cas was found to modestly enhance epidermal growth factor (EGF)-induced activation of the SRE. A Cas mutant lacking the Src binding region did not potentiate the EGF response, suggesting that Cas enhances EGF signaling by binding to endogenous cellular Src or another Src family member. These observations implicate Cas as a mediator of Src-induced transcriptional activation.
Src底物p130(Cas)是一种对接蛋白,包含一个SH3结构域、一个含有多个共有SH2结合位点的底物结构域以及一个Src结合区域。我们研究了Cas在v-Src介导的即刻早期基因(IEGs)转录激活中发挥作用的可能性。v-Src对IEGs的转录激活通过不同的转录控制元件如血清反应元件(SRE)来实现。利用一个SRE转录报告基因来研究Cas介导Src诱导的SRE激活的能力。v-Src和Cas共表达导致SRE依赖性转录比单独v-Src诱导的水平增加了三倍。Cas依赖性的SRE激活依赖于v-Src的激酶活性和Cas的Src结合区域。Cas内富含丝氨酸的区域促进向SRE的信号传导,而Cas SH3结构域则抑制该信号传导。Cas依赖性的SRE激活伴随着活性Ras水平的增加以及丝裂原活化蛋白激酶(MAPK) Erk2活性的增加;这些变化被衔接蛋白Grb?2的显性负性突变体的共表达所阻断。Ras、MAPK激酶(Mek1)和Grb2的显性负性突变体的共表达消除了SRE激活。Cas与v-Src共表达增强了Grb2与衔接蛋白Shc和蛋白酪氨酸磷酸酶Shp-2的结合;Shc或Shp-2突变体的共表达显著降低了Cas和v-Src介导的SRE激活。Cas诱导的Grb2与Shp-2和Shc的结合可能解释了Cas依赖性的Ras/Mek/Erk途径激活和SRE依赖性转录。14-3-3蛋白也可能在Cas介导的向SRE的信号传导中发挥作用。发现Cas的过表达适度增强了表皮生长因子(EGF)诱导的SRE激活。缺乏Src结合区域的Cas突变体不能增强EGF反应,这表明Cas通过与内源性细胞Src或另一个Src家族成员结合来增强EGF信号传导。这些观察结果表明Cas是Src诱导的转录激活的介质。