正常和sv40转化的WI-38成纤维细胞亚细胞部分不同的环核苷酸磷酸二酯酶活性。

G M Nemecek, R W Butcher
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引用次数: 0

摘要

采用WI-38和sv40转化的WI-38 (VA13)成纤维细胞的破细胞制备,比较两种细胞株的环核苷酸磷酸二酯酶活性。WI-38和VA13匀浆的大部分cAMP或cGMP磷酸二酯酶活性发现于100,000 x g成纤维细胞上清部分。当cAMP或cGMP作为底物时,WI-38和VA13可溶性磷酸二酯酶活性表现出异常的动力学行为。在低底物浓度下,例如0.1 muM, WI-38上清馏分水解cGMP的速度比cAMP快得多。在高底物浓度下,例如100muM,相同的酶制剂降解cAMP的速度是cGMP的两倍以上。相比之下,VA13可溶性磷酸二酯酶活性以相似的速率催化了大量cAMP和cGMP浓度的水解。WI-38上清部分的磷酸二酯酶活性通常比类似的VA13酶活性对MIX和罂粟碱的抑制更为敏感。cGMP对WI-38和VA13上清制剂的cAMP磷酸二酯酶活性均呈浓度依赖性降低。cAMP是VA13可溶性磷酸二酯酶水解cGMP的有效抑制剂。然而,在cAMP的存在下,WI-38上清组分的cGMP磷酸二酯酶活性仅略有降低。WI-38和VA13上清制备的deae -纤维素层析显示,每种细胞类型的磷酸二酯酶活性都有两个主峰。WI-38峰I显示1muM cGMP比1muM cAMP的活性大得多,并且似乎由两种不同的磷酸二酯酶活性组成。WI-38 Ia峰含有磷酸二酯酶活性,可被煮沸、透析的成纤维细胞均质液刺激;WI-38 Ib峰与含有大部分环GMP水解活性的柱相吻合。以与WI-38 Ia峰相同的离子强度从DEAE纤维素柱中洗脱VA13 I峰磷酸二酯酶活性,并以几乎相同的速率水解这两种底物。这种酶的活性在煮熟的、透析的成纤维细胞制剂中也增加了。WI-38和VA13成纤维细胞的峰II磷酸二酯酶活性对cAMP作为底物具有相对特异性。在VA13上清中未分离到具有WI-38 Ib峰特性的磷酸二酯酶活性。这些结果表明,在WI-38和VA13培养物中cAMP积累的不同模式可能至少部分与正常和转化成纤维细胞中不同的磷酸二酯酶活性有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dissimilar cyclic nucleotide phosphodiesterase activities in subcellular fractions from normal and SV40-transformed WI-38 fibroblasts.

Broken cell preparations of WI-38 and SV40-transformed WI-38 (VA13) fibroblasts were used to compare the cyclic nucleotide phosphodiesterase activities of the two cell strains. The bulk of the cAMP or cGMP phosphodiesterase activity of WI-38 and VA13 homogenates was found in the 100,000 x g fibroblast supernatant fractions. WI-38 and VA13 soluble phosphodiesterase activities showed anomalous kinetic behavior with either cAMP or cGMP as the substrate. At low substrate concentrations, e.g., 0.1 muM, WI-38 supernatant fractions hydrolyzed cGMP much more rapidly than cAMP. At high substrate concentrations, e.g., 100muM, the same enzyme preparations degraded cAMP more than twice as fast as cGMP. In contrast, VA13 soluble phosphodiesterase activity catalyzed the hydrolysis of a wide range of cAMP and cGMP concentrations at similar rates. Phosphodiesterase activity in WI-38 supernatant fractions was generally more sensitive than that of the comparable VA13 enzyme activity to inhibition by MIX and papaverine. The cAMP phosphodiesterase activity of both WI-38 and VA13 supernatant preparations was decreased by cGMP in a concentration-dependent manner. cAMP was an effective inhibitor of cGMP hydrolysis by VA13 soluble phosphodiesterase activity. Yet, the cGMP phosphodiesterase activity of WI-38 supernatant fractions was only slightly reduced in the presence of cAMP. DEAE-cellulose chromatography of WI-38 and VA13 supernatant preparations revealed two major peaks of phosphodiesterase activity for each cell type. WI-38 peak I showed much greater activity with 1muM cGMP than with 1muM cAMP and appeared to be composed of two different phosphodiesterase activities. WI-38 peak Ia included phosphodiesterase activity which could be stimulated by boiled, dialyzed fibroblast homogenates while WI-38 peak Ib coincided with column fractions which contained most of the cyclic GMP hydrolytic activity. VA13 peak I phosphodiesterase activity was eluted from DEAE cellulose columns at the same ionic strength as WI-38 peak Ia and hydrolyzed these two substrates at nearly identical rates. This enzyme activity was also increased in the presence of boiled, dialyzed fibroblast preparations. Peak II phosphodiesterase activities from both WI-38 and VA13 fibroblasts were relatively specific for cAMP as the substrate. Phosphodiesterase activity with the properties of WI-38 peak Ib was not isolated from VA13 supernatant fractions. These results suggested that the dissimilar patterns of cAMP accumulation in WI-38 and VA13 cultures may be at least partially related to different phosphodiesterase activities in the normal and the transformed fibroblasts.

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