Scholler J K, Perez-Villar J J, O'Day K, Kanner S B
Bristol-Myers Squibb Pharmaceutical Research Institute, Princeton, NJ 08543, USA.
Eur J Immunol. 2000 Aug;30(8):2378-87. doi: 10.1002/1521-4141(2000)30:8<2378::AID-IMMU2378>3.0.CO;2-E.
One mechanism for transducing signals downstream of lymphocyte receptor activation involves the stable association between signaling proteins. To identify protein ligands of the signal activator phospholipase Cgamma1 (PLCgamma1), we screened T cell cDNA libraries with the PLCgamma1-SH3 domain by the yeast two-hybrid assay. We observed association between the PLCgamma1-SH3 domain and the human Ras guanine nucleotide exchange factor son-of-sevenless-2 (hSos2) through a proline-rich domain interaction. Stable and abundant hSos2 / PLCgamma1 and hSos1 / PLCgamma1 complexes were observed in unstimulated T cells. The interaction between these enzymes was augmented following engagement of the T cell antigen receptor (TCR / CD3). The kinetics of protein complex enhancement correlated with TCR / CD3-induced tyrosine phosphorylation of PLCgamma1; however, those PLCgamma1 molecules in complex with hSos2 were non-phosphorylated after TCR / CD3 stimulation, in contrast to the phosphorylated PLCgamma1 associated with the linker for activation of T cells, LAT. The Grb2 adapter protein was detected in complex with hSos / PLCgamma1, suggesting a regulatory role for Grb2. SH3 domains from both Grb2 and PLCgamma1, but not RasGAP, bound directly to hSos homologues. The SH2 domain from Grb2 formed an association with the hSos / PLCgamma1 complex, which was enhanced following TCR / CD3 ligation. Together, the data suggest a mechanism for the son-of-sevenless and PLCgamma1 signal transducing enzymes in recruitment to protein complexes with potentially differential signaling consequences in T lymphocytes.
淋巴细胞受体激活后信号转导的一种机制涉及信号蛋白之间的稳定结合。为了鉴定信号激活磷脂酶Cγ1(PLCγ1)的蛋白质配体,我们通过酵母双杂交试验用PLCγ1 - SH3结构域筛选了T细胞cDNA文库。我们通过富含脯氨酸的结构域相互作用观察到PLCγ1 - SH3结构域与人Ras鸟嘌呤核苷酸交换因子七号染色体失活蛋白2(hSos2)之间的结合。在未刺激的T细胞中观察到稳定且丰富的hSos2 / PLCγ1和hSos1 / PLCγ1复合物。T细胞抗原受体(TCR / CD3)激活后,这些酶之间的相互作用增强。蛋白质复合物增强的动力学与TCR / CD3诱导的PLCγ1酪氨酸磷酸化相关;然而,与hSos2结合的那些PLCγ1分子在TCR / CD3刺激后未被磷酸化,这与与T细胞激活连接蛋白(LAT)相关的磷酸化PLCγ1形成对比。检测到Grb2衔接蛋白与hSos / PLCγ1形成复合物,提示Grb2具有调节作用。Grb2和PLCγ1的SH3结构域而非RasGAP直接与hSos同源物结合。Grb2的SH2结构域与hSos / PLCγ1复合物形成结合,在TCR / CD3连接后增强。总之,这些数据提示了七号染色体失活蛋白和PLCγ1信号转导酶在募集到蛋白质复合物中的一种机制,这在T淋巴细胞中可能具有不同的信号转导后果。