SaOS-2人成骨细胞对碱性磷酸酶释放的蛋白激酶a依赖性抑制:表达环状amp抗性表型的新突变细胞系的研究

S Fukayama, A K Kearns, R M Skurat, A H Tashjian, F R Bringhurst
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引用次数: 10

摘要

我们建立了表达环AMP (cAMP)抗性表型的SaOS-2突变细胞系,以研究正磷酸单酯磷酸水解酶碱性优化酶(ALPase)在甲状旁腺激素(PTH)作用中的调节作用及其功能重要性。在金属硫蛋白启动子的控制下,用一种质粒稳定地转染细胞,该质粒指导蛋白激酶a (PKA) I型调节亚基的突变形式的合成。无论是否存在Zn2+,亲本SaOS-2细胞与突变系对125I-Nle8,18Tyr34bPTH1-34NH2的亲和力和受体数量均无显著差异。当用生长抑素启动子-氯霉素乙酰转移酶(CAT)报告质粒瞬时转染cAMP依赖基因转录时,在Zn2+存在的突变细胞系中,人PTH和二丁基cAMP (DBcAMP)刺激的CAT活性被抑制了90%以上。相比之下,在锌(2+)处理的突变细胞中,五聚体胶原酶启动子/CAT结构体(包含AP-1反应元件(5x- tret -CAT)的串联拷贝)的phobol酯的激活不受影响。在Zn2+的作用下,PTH和DBcAMP对ALPase释放的抑制作用减弱了80-90%;在这些激动剂之间,抑制作用的大小没有显著差异。我们认为PTH对SaOS-2细胞ALPase释放的抑制作用是通过激活PKA介导的。这些camp耐药细胞系将特别有助于阐明人类成骨细胞中甲状旁腺激素的信号转导机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protein kinase A-dependent inhibition of alkaline phosphatase release by SaOS-2 human osteoblastic cells: studies in new mutant cell lines that express a cyclic AMP-resistant phenotype.

We have established mutant SaOS-2 cell lines that express a cyclic AMP (cAMP)-resistant phenotype to investigate the regulation and functional importance of orthophosphoric-monoester phosphohydrolase alkaline optimum (ALPase) in the action of parathyroid hormone (PTH). Cells were stably transfected with a plasmid that directs the synthesis of a mutant form of the type I regulatory subunit of protein kinase A (PKA) under the control of the metallothionein promotor. There was no significant difference between parental SaOS-2 cells and the mutant lines in the affinity or number of receptors for 125I-Nle8,18Tyr34bPTH1-34NH2, either in the absence or presence of Zn2+. When cAMP-dependent gene transcription was examined using transient transfection with a somatostatin promoter-chloramphenicol acetyl transferase (CAT) reporter plasmid, CAT activity stimulated by human PTH and dibutyryl cAMP (DBcAMP) was inhibited by greater than 90% in the presence of Zn2+ in the mutant cell lines. In contrast, activation by a phorbol ester of a pentameric collagenase promoter/CAT construct containing five tandem copies of the AP-1 response element (5x-TRE-CAT) was unaffected in Zn(2+)-treated mutant cells. The inhibitory actions of PTH and DBcAMP on ALPase release were blunted by up to 80-90% in the mutant cell lines in the presence of Zn2+; there were no significant differences in the magnitude of inhibitory effects between these agonists. We conclude that the inhibitory action of PTH on ALPase release in SaOS-2 cells is mediated via activation of PKA. These cAMP-resistant cell lines will be especially useful in elucidating signal transduction mechanism(s) for PTH in human osteoblastic cells.

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