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Regulation between nitric oxide and MAPK signal transduction in mammals
作者姓名:TAO Yong  ZHANG Meiji  HONG Haiyan  XIA Guoliang
作者单位:1.College of Biological Sciences, China Agricultural Univeristy, Beijing 100094; 2. College of Animal Husbandry and Aquaticulture, Anhui Agricultural University, Hefei 230036, China glxiachina@sohu.com
基金项目:国家自然科学基金,北京市自然科学基金
摘    要:Nitric oxide (NO) is an important biological messenger in the regulation of tissue homeostasis. It exhibits a wide range of effects during physiological and pathophysiological processes. Typical beneficial properties of NO include the regulation of vascular tone,the protection of cells against apoptosis, the modulation of immune responses, and the killing of microbial pathogens. On the other hand,NO may cause severe vasodilation and myocardial depression during bacterial sepsis or act as a cytotoxic and tissue-damaging molecule in autoimmune diseases. Mitogen-activated protein kinase (MAPK) is a family of serine/threonine protein kinases that are widely distributed in mammalian cells. MAPK cascade plays pivotal roles in gene expression, cell proliferation, differentiation, neuronal survival and programmed cell death under a variety of experimental conditions. MAPKs transduce the signal for the cellular response to extracellular stresses or stimuli. The relation between them, however, has never been reviewed. Based on our researches and other reports in the field, we review their reciprocal regulatory functions.

关 键 词:MAPK    nitric  oxide    nitric  oxide  synthase    signal  transduction

Regulation between nitric oxide and MAPK signal transduction in mammals
TAO Yong,ZHANG Meiji,HONG Haiyan,XIA Guoliang.Regulation between nitric oxide and MAPK signal transduction in mammals[J].Progress in Natural Science,2005,15(1):1-9.
Authors:TAO Yong  Zhang Meijia  Hong Haiyan  Xia Guoliang
Abstract:Nitric oxide (NO) is an important biological messenger in the regulation of tissue homeostasis. It exhibits a wide range of effects during physiological and pathophysiological processes. Typical beneficial properties of NO include the regulation of vascular tone,the protection of cells against apoptosis, the modulation of immune responses, and the killing of microbial pathogens. On the other hand,NO may cause severe vasodilation and myocardial depression during bacterial sepsis or act as a cytotoxic and tissue-damaging molecule in autoimmune diseases. Mitogen-activated protein kinase (MAPK) is a family of serine/threonine protein kinases that are widely distributed in mammalian cells. MAPK cascade plays pivotal roles in gene expression, cell proliferation, differentiation, neuronal survival and programmed cell death under a variety of experimental conditions. MAPKs transduce the signal for the cellular response to extracellular stresses or stimuli. The relation between them, however, has never been reviewed. Based on our researches and other reports in the field, we review their reciprocal regulatory functions.
Keywords:MAPK  nitric oxide  nitric oxide synthase  signal transduction
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