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氧自由基/一氧化氮介导钙依赖性激素对环鸟苷酸系统的作用:信号转导机制中的一个新概念。

Oxygen-radical/nitric oxide mediate calcium-dependent hormone action on cyclic GMP system: a novel concept in signal transduction mechanisms.

作者信息

Mittal C K

机构信息

Division of Pharmaceutical Sciences, College of Pharmacy and Health Sciences, Texas Southern University, Houston 77004, USA.

出版信息

Mol Cell Biochem. 1995 Aug-Sep;149-150:257-62. doi: 10.1007/BF01076585.

Abstract

The broad objective of these studies was to understand the nature of cyclic GMP system and the mechanism(s) whereby hormone, autacoids and drugs alter this signal in various physiological systems. Studies were undertaken on the modulation of guanylate cyclase activity by oxygen-radicals/nitric oxide and the mechanism(s) of generation of nitric oxide by receptor-selective hormones. We observed that cytosolic guanylate cyclase undergoes significant stimulation in the presence of oxygen-radicals/nitric oxide. This activation by nitric oxide can be reversed by hemeproteins, thus, enabling guanylate cyclase system to cycle between activated and deactivated state. The evidence is presented that oxygen-radicals are required for the synthesis of nitric oxide by NO synthase as demonstrated by inhibition of NO formation by oxygen-radical scavengers. And finally, the data is presented that acetylcholine-induced elevations of intracellular levels of cyclic GMP can be attenuated by muscarinic antagonist, atropine and superoxide anion scavenger, nitroblue tetrazolium. These observations establish a novel concept that activation of hormone receptors on the cell surface, triggers generation of oxygen radicals and hydrogen peroxide which participates in the catalytic conversion of L-arginine to nitric oxide by nitric oxide synthase in the presence of calcium ion. The oxygen-radicals/NO, thus formed, oxidatively activate guanylate cyclase and transduce the message of calcium-dependent hormones.

摘要

这些研究的广泛目标是了解环鸟苷酸系统的本质以及激素、自分泌物质和药物在各种生理系统中改变这种信号的机制。开展了关于氧自由基/一氧化氮对鸟苷酸环化酶活性的调节以及受体选择性激素产生一氧化氮的机制的研究。我们观察到,在有氧自由基/一氧化氮存在的情况下,胞质鸟苷酸环化酶会受到显著刺激。一氧化氮的这种激活作用可被血红素蛋白逆转,从而使鸟苷酸环化酶系统能够在激活态和失活态之间循环。有证据表明,氧自由基是一氧化氮合酶合成一氧化氮所必需的,这一点可通过氧自由基清除剂抑制一氧化氮形成得到证明。最后,有数据表明,毒蕈碱拮抗剂阿托品和超氧阴离子清除剂硝基蓝四唑可减弱乙酰胆碱诱导的细胞内环鸟苷酸水平升高。这些观察结果确立了一个新的概念,即细胞表面激素受体的激活会触发氧自由基和过氧化氢的产生,在钙离子存在的情况下,它们参与一氧化氮合酶将L-精氨酸催化转化为一氧化氮的过程。由此形成的氧自由基/一氧化氮会氧化激活鸟苷酸环化酶并传递钙依赖性激素的信息。

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