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甲基乙二醛是一种源自糖酵解的代谢产物,在酿酒酵母中作为高渗甘油-丝裂原活化蛋白激酶级联反应以及钙调神经磷酸酶/Crz1介导途径的信号启动子发挥作用。

Methylglyoxal, a metabolite derived from glycolysis, functions as a signal initiator of the high osmolarity glycerol-mitogen-activated protein kinase cascade and calcineurin/Crz1-mediated pathway in Saccharomyces cerevisiae.

作者信息

Maeta Kazuhiro, Izawa Shingo, Inoue Yoshiharu

机构信息

Laboratory of Molecular Microbiology, Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Uji, Kyoto 611-0011, Japan.

出版信息

J Biol Chem. 2005 Jan 7;280(1):253-60. doi: 10.1074/jbc.M408061200. Epub 2004 Nov 1.

Abstract

Methylglyoxal (MG) is a typical 2-oxoaldehyde derived from glycolysis, although it inhibits the growth of cells in all types of organism. Hence, it has been questioned why such a toxic metabolite is synthesized via the ubiquitous energy-generating pathway. We have previously reported that expression of GLO1, coding for the major enzyme detoxifying MG, was induced by osmotic stress in a high osmolarity glycerol (HOG)-mitogen-activated protein (MAP) kinase-dependent manner in Saccharomyces cerevisiae. Here we show that MG activates the HOG-MAP kinase cascade. Two osmosensors, Sln1 and Sho1, have been identified to function upstream of the HOG-MAP kinase cascade, and we reveal that MG initiates the signal transduction to this MAP kinase cascade through the Sln1 branch. We also demonstrate that MG activates the Msn2 transcription factor. Moreover, MG activated the uptake of Ca(2+) in yeast cells, thereby stimulating the calcineurin/Crz1-mediated Ca(2+) signaling pathway. We propose that MG functions as a signal initiator in yeast.

摘要

甲基乙二醛(MG)是一种源自糖酵解的典型二氧代醛,尽管它会抑制所有类型生物体中细胞的生长。因此,有人质疑为何这样一种有毒代谢物会通过普遍存在的能量产生途径合成。我们之前报道过,编码主要MG解毒酶的GLO1的表达,在酿酒酵母中以高渗甘油(HOG)-丝裂原活化蛋白(MAP)激酶依赖性方式受到渗透压胁迫的诱导。在此我们表明,MG会激活HOG-MAP激酶级联反应。已鉴定出两种渗透压感受器Sln1和Sho1在HOG-MAP激酶级联反应上游发挥作用,并且我们揭示MG通过Sln1分支启动向该MAP激酶级联反应的信号转导。我们还证明MG会激活Msn2转录因子。此外,MG会激活酵母细胞中Ca(2+)的摄取,从而刺激钙调神经磷酸酶/Crz1介导的Ca(2+)信号通路。我们提出MG在酵母中作为信号启动子发挥作用。

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