人单核白细胞环amp -磷酸二酯酶刺激引起的功能脱敏。

S C Chan, S R Grewe, S R Stevens, J M Hanifin
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摘要

我们以前已经证明,通过低(例如,10(-6)M)浓度的组胺、异丙肾上腺素和前列腺素E1孵育,人单核白细胞(MNL)具有异源脱敏作用。随后将细胞暴露于三种激动剂中的任何一种的刺激(例如,10(-3)至10(-5)M)浓度下,显示cAMP反应降低。异常反应的可能机制包括cAMP的快速降解。在本报告中,我们证明了激动剂脱敏后camp -磷酸二酯酶(PDE)活性的时间依赖性升高。酶活性的增加伴随着cAMP反应性的镜像下降。效果迅速而持久,恢复时间与脱敏时间成正比。环己亚胺不能抑制短期组胺暴露引起的cAMP-PDE活性升高,但部分降低了慢性组胺脱敏引起的cAMP-PDE活性升高。我们在MNL中观察到三种不同的cAMP-PDE动力学形式,分别为I、II和III,每种形式都有不同的Km和Vmax。组胺脱敏增加了II型的活性,并大大降低了I型的活性。我们还观察到淋巴细胞cAMP-PDE可能从I型转化为更具单核细胞特征的II型。激动剂诱导的cAMP-PDE活性的增加和酶动力学特性的变化代表了功能脱敏的潜在重要机制。这可能对环核苷酸的生物学调控有重要影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional desensitization due to stimulation of cyclic AMP-phosphodiesterase in human mononuclear leukocytes.

We have previously demonstrated heterologous desensitization of human mononuclear leukocytes (MNL) by incubation of low (e.g., 10(-6)M) concentrations of histamine, isoproterenol and prostaglandin E1. Subsequent exposure of the cells to stimulating (e.g., 10(-3) to 10(-5)M) concentrations of any one of the three agonists shows reduced cAMP responses. Possible mechanisms for the subnormal responsiveness include rapid degradation of cAMP. In this report we demonstrated time-dependent elevation of cAMP-phosphodiesterase (PDE) activity following agonist desensitization. The increased enzyme activity was accompanied by a mirror-image decrease in cAMP responsiveness. The effect was rapid and prolonged, with recovery time proportional to desensitization time. Cycloheximide failed to inhibit the increase of cAMP-PDE activity caused by short-term histamine exposure, but partially diminished the elevation as the result of chronic histamine desensitization. We observed three different kinetic forms of cAMP-PDE in MNL, designated as I, II and III, each with distinctive Km and Vmax. Histamine desensitization increased the activity of form II and drastically reduced that of form I. Also we observed a possible conversion of lymphocyte cAMP-PDE from form I to the form II more characteristic of monocytes. Agonist-induced increases in cAMP-PDE activity and changes in enzyme kinetic characteristics represent a potentially important mechanism of functional desensitization. This may have significant effects on biological regulation of cyclic nucleotides.

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