Ahn Bong-Hyun, Kim Shi Yeon, Kim Eun Hee, Choi Kyeong Sook, Kwon Taeg Kyu, Lee Young Han, Chang Jong-Soo, Kim Myung-Suk, Jo Yang-Hyeok, Min Do Sik
Department of Physiology, College of Medicine, The Catholic University of Korea, Seoul, Korea.
Mol Cell Biol. 2003 May;23(9):3103-15. doi: 10.1128/MCB.23.9.3103-3115.2003.
Phospholipase D (PLD) has been implicated in the signal transduction pathways initiated by several mitogenic protein tyrosine kinases. We demonstrate for the first time that most notably PLD2 and to a lesser extent the PLD1 isoform are tyrosine phosphorylated by c-Src tyrosine kinase via direct association. Moreover, epidermal growth factor induced tyrosine phosphorylation of PLD2 and its interaction with c-Src in A431 cells. Interaction between these proteins is via the pleckstrin homology domain of PLD2 and the catalytic domain of c-Src. Coexpression of PLD1 or PLD2 with c-Src synergistically enhances cellular proliferation compared with expression of either molecule. While PLD activity as a lipid-hydrolyzing enzyme is not affected by c-Src, wild-type PLDs but not catalytically inactive PLD mutants significantly increase c-Src kinase activity, up-regulating c-Src-mediated paxillin phosphorylation and extracellular signal-regulated kinase activity. These results demonstrate the critical role of PLD catalytic activity in the stimulation of Src signaling. In conclusion, we provide the first evidence that c-Src acts as a kinase of PLD and PLD acts as an activator of c-Src. This transmodulation between c-Src and PLD may contribute to the promotion of cellular proliferation via amplification of mitogenic signaling pathways.
磷脂酶D(PLD)与几种促有丝分裂蛋白酪氨酸激酶启动的信号转导途径有关。我们首次证明,最显著的是PLD2,其次是PLD1亚型,通过直接结合被c-Src酪氨酸激酶酪氨酸磷酸化。此外,表皮生长因子诱导A431细胞中PLD2的酪氨酸磷酸化及其与c-Src的相互作用。这些蛋白质之间的相互作用是通过PLD2的普列克底物蛋白同源结构域和c-Src的催化结构域。与单独表达任一分子相比,PLD1或PLD2与c-Src共表达可协同增强细胞增殖。虽然作为脂质水解酶的PLD活性不受c-Src影响,但野生型PLD而非催化失活的PLD突变体可显著增加c-Src激酶活性,上调c-Src介导的桩蛋白磷酸化和细胞外信号调节激酶活性。这些结果证明了PLD催化活性在刺激Src信号传导中的关键作用。总之,我们提供了首个证据,表明c-Src作为PLD的激酶,而PLD作为c-Src的激活剂。c-Src和PLD之间的这种转调节可能通过有丝分裂信号通路的放大促进细胞增殖。