Department of Biomedical Sciences, Faculty of Medicine, Universidad Católica del Norte, Coquimbo, Chile.
Section on Cellular Signaling, The Eunice Kennedy Shiver National Institute of Health and Human Development, National Institutes of Health, Bethesda, MD, USA.
Pain. 2017 Nov;158(11):2155-2168. doi: 10.1097/j.pain.0000000000001021.
The purinergic P2X2 receptor (P2X2R) is an adenosine triphosphate-gated ion channel widely expressed in the nervous system. Here, we identified a putative cyclin-dependent kinase 5 (Cdk5) phosphorylation site in the full-size variant P2X2aR (TPKH), which is absent in the splice variant P2X2bR. We therefore investigated the effects of Cdk5 and its neuronal activator, p35, on P2X2aR function. We found an interaction between P2X2aR and Cdk5/p35 by co-immunofluorescence and co-immunoprecipitation in HEK293 cells. We also found that threonine phosphorylation was significantly increased in HEK293 cells co-expressing P2X2aR and p35 as compared to cells expressing only P2X2aR. Moreover, P2X2aR-derived peptides encompassing the Cdk5 consensus motif were phosphorylated by Cdk5/p35. Whole-cell patch-clamp recordings indicated a delay in development of use-dependent desensitization (UDD) of P2X2aR but not of P2X2bR in HEK293 cells co-expressing P2X2aR and p35. In Xenopus oocytes, P2X2aRs showed a slower UDD than in HEK293 cells and Cdk5 activation prevented this effect. A similar effect was found in P2X2a/3R heteromeric currents in HEK293 cells. The P2X2aR-T372A mutant was resistant to UDD. In endogenous cells, we observed similar distribution between P2X2R and Cdk5/p35 by co-localization using immunofluorescence in primary culture of nociceptive neurons. Moreover, co-immunoprecipitation experiments showed an interaction between Cdk5 and P2X2R in mouse trigeminal ganglia. Finally, endogenous P2X2aR-mediated currents in PC12 cells and P2X2/3R mediated increases of intracellular Ca in trigeminal neurons were Cdk5 dependent, since inhibition with roscovitine accelerated the desensitization kinetics of these responses. These results indicate that the P2X2aR is a novel target for Cdk5-mediated phosphorylation, which might play important physiological roles including pain signaling.
嘌呤能 P2X2 受体 (P2X2R) 是一种广泛表达于神经系统的三磷酸腺苷门控离子通道。在这里,我们在全长变体 P2X2aR (TPKH) 中鉴定出一个假定的周期蛋白依赖性激酶 5 (Cdk5) 磷酸化位点,而在剪接变体 P2X2bR 中不存在该位点。因此,我们研究了 Cdk5 及其神经元激活剂 p35 对 P2X2aR 功能的影响。我们通过共免疫荧光和共免疫沉淀在 HEK293 细胞中发现 P2X2aR 与 Cdk5/p35 之间存在相互作用。我们还发现,与仅表达 P2X2aR 的细胞相比,共表达 P2X2aR 和 p35 的 HEK293 细胞中苏氨酸磷酸化显著增加。此外,包含 Cdk5 共有基序的 P2X2aR 衍生肽被 Cdk5/p35 磷酸化。全细胞膜片钳记录表明,在共表达 P2X2aR 和 p35 的 HEK293 细胞中,P2X2aR 的使用依赖性脱敏 (UDD) 发展延迟,但 P2X2bR 则不然。在 Xenopus 卵母细胞中,与 HEK293 细胞相比,P2X2aRs 的 UDD 较慢,而 Cdk5 激活可防止这种效应。在 HEK293 细胞中的 P2X2a/3R 异源电流中也发现了类似的效果。P2X2aR-T372A 突变体对 UDD 具有抗性。在原代伤害性神经元培养物中,我们通过免疫荧光共定位观察到 P2X2R 和 Cdk5/p35 之间的类似分布。此外,共免疫沉淀实验显示在小鼠三叉神经节中 Cdk5 与 P2X2R 之间存在相互作用。最后,PC12 细胞中内源性 P2X2aR 介导的电流和三叉神经神经元中 P2X2/3R 介导的细胞内 Ca2+增加均依赖于 Cdk5,因为用 roscovitine 抑制可加速这些反应的脱敏动力学。这些结果表明,P2X2aR 是 Cdk5 介导磷酸化的新靶标,这可能在包括疼痛信号在内的重要生理过程中发挥作用。