Ashikaga T, Strada S J, Thompson W J
Department of Pharmacology, University of South Alabama, College of Medicine, Mobile 36688, USA.
Biochem Pharmacol. 1997 Nov 15;54(10):1071-9. doi: 10.1016/s0006-2952(97)00287-6.
Primary cultures of bovine aortic endothelial cells (BAEC) express cyclic nucleotide phosphodiesterase (CN PDE) isozymes of the PDE2, PDE4 and PDE5 gene families. We report here that the isozyme profiles of CN PDE and the amounts of each vary with the passage number of BAEC cultures. Characterization by anion-exchange chromatography and pharmacological criteria were used to study CN PDE in early (4-6), intermediate (6-10), and late (> 17) passages of purified BAEC. PDE2 and a minor fraction of PDE5 accounted for cyclic GMP hydrolysis in early passages, but both isozymes were lost with cell passage. Cyclic AMP was hydrolyzed by both PDE2 and PDE4 isozymes in early passage endothelial cells, but PDE4 was increased dramatically in higher passage cells. Also appearing in the higher passage cells were prominent PDE1 and minor PDE3 activities. The ratios of cytosolic to particulate activities were similar at all passages. BAEC PDE isoforms in intact cells assessed by [3H]-adenine prelabeling showed that atriopeptin II decreased isoproterenol-induced cyclic AMP accumulation in early but not later passage cells, consistent with the loss of PDE2 expression. Enhancement of isoproterenol-induced cyclic AMP accumulation by rolipram, a PDE4 inhibitor, was also greatly diminished during culture passages. Changes in CN PDE isoform expression and consequent cyclic AMP turnover validate the importance of considering cell passage number when cultures of BAEC are used to study the regulation of endothelial cell cyclic nucleotide metabolism and processes mediated by cyclic nucleotides in this model system.
牛主动脉内皮细胞(BAEC)的原代培养物表达PDE2、PDE4和PDE5基因家族的环核苷酸磷酸二酯酶(CN PDE)同工酶。我们在此报告,CN PDE的同工酶谱及其各自的量会随着BAEC培养物的传代次数而变化。通过阴离子交换色谱和药理学标准进行表征,以研究纯化的BAEC早期(4 - 6代)、中期(6 - 10代)和后期(> 17代)的CN PDE。PDE2和一小部分PDE5在早期传代中负责环鸟苷酸水解,但随着细胞传代,这两种同工酶都消失了。在早期传代的内皮细胞中,PDE2和PDE4同工酶都能水解环腺苷酸,但在传代次数较高的细胞中,PDE4显著增加。在传代次数较高的细胞中还出现了显著的PDE1活性和少量的PDE3活性。在所有传代中,胞质与颗粒活性的比率相似。通过[3H] - 腺嘌呤预标记评估完整细胞中的BAEC PDE同工型表明,心房肽II在早期传代细胞中可降低异丙肾上腺素诱导的环腺苷酸积累,但在后期传代细胞中则不然,这与PDE2表达的丧失一致。PDE4抑制剂咯利普兰对异丙肾上腺素诱导的环腺苷酸积累的增强作用在培养传代过程中也大大减弱。CN PDE同工型表达的变化以及随之而来的环腺苷酸周转,证实了在使用BAEC培养物研究该模型系统中内皮细胞环核苷酸代谢调节以及由环核苷酸介导的过程时,考虑细胞传代次数的重要性。