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蛋白激酶C对环磷酸腺苷(cAMP)信号转导的条件性激活。佛波酯对透化细胞和完整细胞中腺苷酸环化酶的影响。

Conditional activation of cAMP signal transduction by protein kinase C. The effect of phorbol esters on adenylyl cyclase in permeabilized and intact cells.

作者信息

Morimoto B H, Koshland D E

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-1393.

出版信息

J Biol Chem. 1994 Feb 11;269(6):4065-9.

PMID:8307964
Abstract

To understand the convergence of cAMP and protein kinase C signal transduction, adenylyl cyclase isozyme identification and biochemical studies were performed on the HT4 neural cell line. In HT4 cells, basal cAMP production by adenylyl cyclase types I and VI were unaffected by phorbol esters, nor did phorbol esters have any effect on forskolin-induced cAMP production. However, phorbol esters synergistically increased cAMP production when adrenaline receptors were simultaneously activated, indicating a conditional activation of cAMP production by phorbol esters. A permeabilized cell preparation was used to analyze the mechanism by which phorbol esters were affecting cAMP production. This preparation enables G-proteins to be activated directly by GTP gamma S or bacterial toxins. In the permeabilized cell preparation, phorbol esters enhanced cAMP produced by GTP gamma S-activated G-protein. A stimulatory G-protein pathway may be involved since phorbol esters synergistically increased cAMP production by cholera toxin, yet had no effect on that produced by pertussis toxin. In this cell culture model, phorbol esters stimulate cAMP production only when some component of the cAMP cascade is simultaneously activated. Moreover, the pattern of modulation suggests that protein kinase C acts on an activated component of the second messenger system, such as the G-protein or the coupling of the G-protein with adenylyl cyclase, and not on the resting state of the protein components.

摘要

为了解环磷酸腺苷(cAMP)和蛋白激酶C信号转导的汇聚情况,我们对HT4神经细胞系进行了腺苷酸环化酶同工酶鉴定及生化研究。在HT4细胞中,I型和VI型腺苷酸环化酶产生的基础cAMP不受佛波酯影响,佛波酯对福斯高林诱导的cAMP产生也无任何作用。然而,当肾上腺素受体同时被激活时,佛波酯可协同增加cAMP的产生,表明佛波酯对cAMP产生具有条件性激活作用。我们采用透化细胞制剂来分析佛波酯影响cAMP产生的机制。这种制剂能使G蛋白被GTPγS或细菌毒素直接激活。在透化细胞制剂中,佛波酯增强了由GTPγS激活的G蛋白产生的cAMP。由于佛波酯可协同增加霍乱毒素产生的cAMP,但对百日咳毒素产生的cAMP无影响,因此可能涉及刺激性G蛋白途径。在这个细胞培养模型中,佛波酯仅在cAMP级联反应的某些成分同时被激活时才刺激cAMP的产生。此外,调节模式表明蛋白激酶C作用于第二信使系统的激活成分,如G蛋白或G蛋白与腺苷酸环化酶的偶联,而不是作用于蛋白质成分的静止状态。

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