Erdogan S, Houslay M D
Division of Biochemistry and Molecular Biology, University of Glasgow, Scotland, U.K.
Biochem J. 1997 Jan 1;321 ( Pt 1)(Pt 1):165-75. doi: 10.1042/bj3210165.
The cAMP phosphodiesterase (PDE) 3 and PDE4 isoforms provide the major cAMP-hydrolysing PDE activities in Jurkat T-cells, with additional contributions from the PDE1 and PDE2 isoforms. Challenge of cells with the adenylate cyclase activator forskolin led to a rapid, albeit transient, increase in PDE3 activity occurring over the first 45 min, followed by a sustained increase in PDE3 activity which began after approximately 3 h and continued for at least 24 h. Only this second phase of increase in PDE3 activity was blocked by the transcriptional inhibitor actinomycin D. After approximately 3 h of exposure to forskolin, PDE4 activity had increased, via a process that could be inhibited by actinomycin D, and it remained elevated for at least a 24 h period. Such actions of forskolin were mimicked by cholera toxin and 8-bromo-cAMP. Forskolin increased intracellular cAMP concentrations in a time-dependent fashion and its action was enhanced when PDE induction was blocked with actinomycin D. Reverse transcription (RT)-PCR analysis, using generic primers designed to detect transcripts representing enzymically active products of the four PDE4 genes, identified transcripts for PDE4A and PDE4D but not for PDE4B or PDE4C in untreated Jurkat T-cells. Forskolin treatment did not induce transcripts for either PDE4B or PDE4C; however, it reduced the RT-PCR signal for PDE4A transcripts and markedly enhanced that for PDE4D transcripts. Using RT-PCR primers for PDE4 splice variants, a weak signal for PDE4D1 was evident in control cells whereas, in forskolin-treated cells, clear signals for both PDE4D1 and PDE4D2 were detected. RT-PCR analysis of the PDE4A species indicated that it was not the PDE4A isoform PDE-46 (PDE4A4B). Immunoblotting of control cells for PDE4 forms identified a single PDE4A species of approximately 118 kDa, which migrated distinctly from the PDE4A4B isoform PDE-46, with immunoprecipitation analyses showing that it provided all of the PDE4 activity in control cells. Forskolin treatment led to a marked decrease of this novel PDE4A species and allowed the detection of a strong signal for an approximately 67 kDa PDE4D species, suggested to be PDE4D1, but did not induce PDE4B and PDE4C isoforms. Elevation of intracellular cAMP concentrations in Jurkat T-cells thus exerts a highly selective effect on the transcriptional activity of the genes encoding the various PDE4 isoforms. This leads to the down-regulation of a novel PDE4A splice variant and the induction of PDE4D1 and PDE4D2 splice variants, leading to a net increase in the total PDE4 activity of Jurkat T-cells.
环磷酸腺苷(cAMP)磷酸二酯酶(PDE)3和PDE4亚型在Jurkat T细胞中提供主要的cAMP水解PDE活性,PDE1和PDE2亚型也有额外贡献。用腺苷酸环化酶激活剂福斯可林刺激细胞,导致PDE3活性在最初45分钟内迅速(尽管是短暂的)增加,随后在大约3小时后开始持续增加,并持续至少24小时。只有PDE3活性增加的第二阶段被转录抑制剂放线菌素D阻断。在暴露于福斯可林约3小时后,PDE4活性通过一个可被放线菌素D抑制的过程增加,并且至少在24小时内保持升高。霍乱毒素和8-溴-cAMP模拟了福斯可林的这种作用。福斯可林以时间依赖性方式增加细胞内cAMP浓度,当用放线菌素D阻断PDE诱导时其作用增强。逆转录(RT)-PCR分析使用设计用于检测代表四个PDE4基因酶活性产物转录本的通用引物,在未处理的Jurkat T细胞中鉴定出PDE4A和PDE4D的转录本,但未鉴定出PDE4B或PDE4C的转录本。福斯可林处理未诱导PDE4B或PDE4C的转录本;然而,它降低了PDE4A转录本的RT-PCR信号,并显著增强了PDE4D转录本的信号。使用针对PDE4剪接变体的RT-PCR引物,在对照细胞中PDE4D1的信号较弱,而在福斯可林处理的细胞中,检测到PDE4D1和PDE4D2的清晰信号。对PDE4A种类的RT-PCR分析表明它不是PDE4A亚型PDE-46(PDE4A4B)。对对照细胞中PDE4形式的免疫印迹鉴定出一种约118 kDa的单一PDE4A种类,其迁移与PDE4A4B亚型PDE-46明显不同,免疫沉淀分析表明它提供了对照细胞中所有的PDE4活性。福斯可林处理导致这种新的PDE4A种类显著减少,并检测到一种约67 kDa的PDE4D种类的强信号,推测为PDE4D1,但未诱导PDE4B和PDE4C亚型。因此,Jurkat T细胞中细胞内cAMP浓度的升高对编码各种PDE4亚型的基因的转录活性产生高度选择性影响。这导致一种新的PDE4A剪接变体的下调以及PDE4D1和PDE4D2剪接变体的诱导,导致Jurkat T细胞总PDE4活性净增加。