Department of Biomedical Sciences, University of New England, 11 Hills Beach Rd, Biddeford, ME, 04005, USA.
Mol Cell Biochem. 2019 Jun;456(1-2):167-178. doi: 10.1007/s11010-019-03502-1. Epub 2019 Feb 9.
Exchange protein directly activated by cAMP (Epac) and protein kinase A are effectors for cAMP with distinct actions and regulatory mechanisms. Epac is a Rap guanine nucleotide exchange factor that activates Rap1; protein kinase C (PKC) is a major downstream target of Epac-Rap1 signaling that has been implicated in a variety of pathophysiological processes, including cardiac hypertrophy, cancer, and nociceptor sensitization leading to chronic pain. Despite the implication of both Epac and PKC in these processes, few downstream targets of Epac-PKC signaling have been identified. This study characterized the regulation of PKC activity downstream of Epac activation. Using an antibody that recognizes phospho-serine residues within the consensus sequence phosphorylated by PKC, we analyzed the 1-dimensional banding profile of PKC substrate protein phosphorylation from the Neuro2A mouse neuroblastoma cell line. Activation of Epac either indirectly by prostaglandin PGE2, or directly by 8-pCPT-2-O-Me-cAMP-AM (8pCpt), produced distinct PKC phospho-substrate protein bands that were suppressed by co-administration of the Epac inhibitor ESI09. Different PKC isoforms contributed to the induction of individual phospho-substrate bands, as determined using isoform-selective PKC inhibitors. Moreover, the banding profile after Epac activation was altered by disruption of the cytoskeleton, suggesting that the orchestration of Epac-dependent PKC signaling is regulated in part by interactions with the cytoskeleton. The approach described here provides an effective means to characterize Epac-dependent PKC activity.
环磷酸腺苷(cAMP)直接激活蛋白(Epac)和蛋白激酶 A 是 cAMP 的效应物,具有不同的作用和调节机制。Epac 是一种 Rap 鸟嘌呤核苷酸交换因子,可激活 Rap1;蛋白激酶 C(PKC)是 Epac-Rap1 信号的主要下游靶标,已被牵连到多种病理生理过程中,包括心脏肥大、癌症和伤害感受器敏化导致慢性疼痛。尽管 Epac 和 PKC 都参与了这些过程,但 Epac-PKC 信号的下游靶标很少被鉴定。本研究描述了 Epac 激活后 PKC 活性的调节。使用识别 PKC 磷酸化共识序列中磷酸丝氨酸残基的抗体,我们分析了来自 Neuro2A 小鼠神经母细胞瘤细胞系的 PKC 底物蛋白磷酸化的 1 维带谱。通过前列腺素 PGE2 间接激活 Epac,或通过 8-pCPT-2-O-Me-cAMP-AM(8pCpt)直接激活 Epac,产生了不同的 PKC 磷酸化底物蛋白带,这些带被 Epac 抑制剂 ESI09 共同给药抑制。使用同工型选择性 PKC 抑制剂确定了不同的 PKC 同工型对诱导个别磷酸化底物带的贡献。此外,Epac 激活后带谱的改变与细胞骨架的破坏有关,这表明 Epac 依赖性 PKC 信号的协调部分受到与细胞骨架相互作用的调节。这里描述的方法提供了一种有效的方法来描述 Epac 依赖性 PKC 活性。