Cao Zhengyu, George Joju, Baden Daniel G, Murray Thomas F
Creighton University, School of Medicine, Department of Pharmacology, Omaha, NE 68178, USA.
Brain Res. 2007 Dec 12;1184:17-27. doi: 10.1016/j.brainres.2007.09.065. Epub 2007 Oct 4.
Brevetoxins (PbTx-1 to PbTx-10) are potent lipid soluble polyether neurotoxins produced by the marine dinoflagellate Karenia brevis. Brevetoxins bind to site 5 of the alpha-subunit of voltage-gated sodium channels (VGSCs) and augment Na(+) influx. In neocortical neurons brevetoxins elevate intracellular Ca(2+) and augment NMDA receptor signaling. In this study, we explored the effects of PbTx-2 on Pyk2 and Src activation in neocortical neurons. We found that both Pyk2 and Src were activated following PbTx-2 exposure. PbTx-2-induced Pyk2 Tyr402 phosphorylation was dependent on elevation of Ca(2+) influx through NMDA receptors. Moreover, Pyk2 Tyr402 phosphorylation was also found to require PKC activation inasmuch as RO-31-8425 and GF 109203x both attenuated the response. In contrast, PbTx-2-induced Src Tyr416 phosphorylation involved a Gq-coupled receptor inasmuch as U73122, a specific PLC inhibitor, abolished the response. This Gq-coupled receptor appears to be mGluR 5. The PKCdelta inhibitor rottlerin abolished PbTx-2-induced Src activation demonstrating that this isoform of PKC is involved in the activation of Src by PbTx-2. Considered together these data suggest that although activation of neuronal Pyk2 and Src result from PbTx-2 stimulation of VGSC, engagement of these two non-receptor tyrosine kinases involves distinct signaling pathways.
短裸甲藻毒素(PbTx - 1至PbTx - 10)是由海洋双鞭毛藻短裸甲藻产生的强效脂溶性多醚神经毒素。短裸甲藻毒素与电压门控钠通道(VGSCs)α亚基的位点5结合,增加Na(+)内流。在新皮质神经元中,短裸甲藻毒素升高细胞内Ca(2+)并增强NMDA受体信号传导。在本研究中,我们探讨了PbTx - 2对新皮质神经元中Pyk2和Src激活的影响。我们发现,暴露于PbTx - 2后,Pyk2和Src均被激活。PbTx - 2诱导的Pyk2 Tyr402磷酸化依赖于通过NMDA受体的Ca(2+)内流增加。此外,还发现Pyk2 Tyr402磷酸化需要PKC激活,因为RO - 31 - 8425和GF 109203x均减弱了该反应。相反,PbTx - 2诱导的Src Tyr416磷酸化涉及Gq偶联受体,因为特异性PLC抑制剂U73122消除了该反应。这种Gq偶联受体似乎是mGluR 5。PKCδ抑制剂rottlerin消除了PbTx - 2诱导的Src激活,表明这种PKC同工型参与了PbTx - 2对Src的激活。综合这些数据表明,虽然神经元Pyk2和Src的激活是由PbTx - 2刺激VGSC引起的,但这两种非受体酪氨酸激酶的参与涉及不同的信号通路。