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一氧化氮作为裂殖酵母粟酒裂殖酵母中的一种信号分子。

Nitric oxide as a signaling molecule in the fission yeast Schizosaccharomyces pombe.

作者信息

Kig Cenk, Temizkan Guler

机构信息

Department of Molecular Biology and Genetics, Faculty of Science, Istanbul University, Vezneciler, 34134 Istanbul, Turkey.

出版信息

Protoplasma. 2009 Dec;238(1-4):59-66. doi: 10.1007/s00709-009-0074-3. Epub 2009 Oct 1.

Abstract

Nitric oxide synthases (NOS) catalyze the synthesis of ubiquitous signaling molecule nitric oxide (NO) which controls numerous biological processes. Using a spectrofluorometric NOS assay, we have measured the rate of total NO production in the crude cell extracts of Schizosaccharomyces pombe. NO production was reduced in the absence of NOS cofactors calmodulin and tetrahydrobiopterin, and a competitive NOS inhibitor NG-nitro-L-arginine methyl ester (L-NAME) was able to cause a statistically significant inhibition on the rate of total NO production. These results, for the first time, provide evidence that an enzyme with a NOS-like activity may be present in the fission yeast. In order to assess the possible regulatory roles of NO as a signaling molecule in this yeast, using the differential display technique, we screened for NO-responsive genes whose expression decreased upon exposure to L-NAME and increased in response to an NO donor, sodium nitroprusside treatment. Differential expression patterns of byr1, pek1, sid1, and wis1 genes were confirmed by quantitative real-time PCR. The physiological experiments performed based on the functions and molecular interactions of these genes have pointed to the possibility that NO production might be required for sporulation in S. pombe. Taken together, these findings suggest that NO may function as a signaling molecule which can induce both transcriptional and physiological changes in the fission yeast. Hence, these data also imply that S. pombe can be used as a model system for investigating the mechanisms underlying NO-related complex signaling pathways.

摘要

一氧化氮合酶(NOS)催化普遍存在的信号分子一氧化氮(NO)的合成,NO控制着众多生物过程。我们使用一种荧光分光光度法的NOS检测方法,测定了粟酒裂殖酵母粗细胞提取物中总NO的产生速率。在缺乏NOS辅因子钙调蛋白和四氢生物蝶呤的情况下,NO的产生减少,竞争性NOS抑制剂NG-硝基-L-精氨酸甲酯(L-NAME)能够对总NO产生速率产生统计学上显著的抑制作用。这些结果首次提供了证据,表明裂殖酵母中可能存在具有NOS样活性的酶。为了评估NO作为该酵母中信号分子的可能调节作用,我们使用差异显示技术筛选了NO响应基因,这些基因在暴露于L-NAME时表达下降,而在对NO供体硝普钠处理作出反应时表达增加。通过定量实时PCR证实了byr1、pek1、sid1和wis1基因的差异表达模式。基于这些基因的功能和分子相互作用进行的生理学实验表明,粟酒裂殖酵母的孢子形成可能需要NO的产生。综上所述,这些发现表明NO可能作为一种信号分子,能够在裂殖酵母中诱导转录和生理变化。因此,这些数据也意味着粟酒裂殖酵母可作为研究NO相关复杂信号通路潜在机制的模型系统。

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