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磷酸二酯酶II,即可被环磷酸鸟苷激活的环核苷酸磷酸二酯酶,调节PC12细胞中环磷酸腺苷的代谢。

Phosphodiesterase II, the cGMP-activatable cyclic nucleotide phosphodiesterase, regulates cyclic AMP metabolism in PC12 cells.

作者信息

Whalin M E, Scammell J G, Strada S J, Thompson W J

机构信息

Department of Pharmacology, University of South Alabama College of Medicine, Mobile 36688.

出版信息

Mol Pharmacol. 1991 Jun;39(6):711-7.

PMID:1646946
Abstract

Analysis of cyclic nucleotide phosphodiesterase (PDE) activity in cellular fractions from cultured rat pheochromocytoma (PC12) cells has shown that the predominant hydrolytic activity in both cytosolic and particulate compartments is characteristic of a PDE II, the cGMP-activatable family of PDE isozymes. Cytosolic PDE activity was purified to a high degree utilizing DE-52 anion exchange and cGMP-Sepharose affinity chromatographies. The physicochemical properties of PC12 PDE II were similar to those of PDE II isolated from particulate or soluble fractions of other tissues, including subunit molecular weight of approximately 102,000, activation of cAMP hydrolysis by cGMP, and positive cooperative kinetic behavior for cAMP and cGMP hydrolysis. The potential role of PDE II in regulating cAMP metabolism in intact PC12 cells was studied using an [3H]adenine prelabeling technique. Stimulation of PC12 cell adenosine receptors resulted in a 5-8-fold increase in cAMP accumulation. Removal of the adenosine stimulus by the addition of exogenous adenosine deaminase resulted in a rapid decay of cAMP to prestimulated basal levels within 2 min. Treatment of PC12 cells with atrial natriuretic factor or sodium nitroprusside caused 1) increased intracellular cGMP levels, 2) attenuation of adenosine-stimulated cAMP accumulation, and 3) increased rates of cAMP decay after removal of the adenosine stimulus. Treatment of PC12 cells with HL-725 (a potent inhibitor of isolated PDE II activity in vitro) caused 1) increased basal cAMP accumulation, 2) potentiation of adenosine-stimulated cAMP accumulation, and 3) retardation of the rate of cAMP decay after removal of the adenosine stimulus. HL-725 blocked both the attenuation of cAMP accumulation and the accelerated rate of cAMP decay observed with the cGMP-elevating agents. These results suggest that, in PC12 cells, drugs or hormones that inhibit PDE II or increase intracellular cGMP levels to activate PDE II can modulate cAMP metabolism by altering the catalytic status of the enzyme.

摘要

对培养的大鼠嗜铬细胞瘤(PC12)细胞的细胞组分中的环核苷酸磷酸二酯酶(PDE)活性进行分析后发现,胞质和微粒体部分的主要水解活性是PDE II的特征,即cGMP可激活的PDE同工酶家族。利用DE - 52阴离子交换和cGMP - 琼脂糖亲和层析,将胞质PDE活性高度纯化。PC12 PDE II的物理化学性质与从其他组织的微粒体或可溶性部分分离的PDE II相似,包括亚基分子量约为102,000,cGMP激活cAMP水解,以及cAMP和cGMP水解的正协同动力学行为。使用[3H]腺嘌呤预标记技术研究了PDE II在完整PC12细胞中调节cAMP代谢的潜在作用。刺激PC12细胞的腺苷受体导致cAMP积累增加5 - 8倍。通过添加外源性腺苷脱氨酶去除腺苷刺激后,cAMP在2分钟内迅速衰减至刺激前的基础水平。用心房利钠因子或硝普钠处理PC12细胞导致:1)细胞内cGMP水平升高;2)腺苷刺激的cAMP积累减弱;3)去除腺苷刺激后cAMP衰减速率增加。用HL - 725(一种体外分离的PDE II活性的有效抑制剂)处理PC12细胞导致:1)基础cAMP积累增加;2)腺苷刺激的cAMP积累增强;3)去除腺苷刺激后cAMP衰减速率减慢。HL - 725阻断了用cGMP升高剂观察到的cAMP积累减弱和cAMP衰减加速。这些结果表明,在PC12细胞中,抑制PDE II或增加细胞内cGMP水平以激活PDE II的药物或激素可通过改变酶的催化状态来调节cAMP代谢。

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