Gómez-Merino Fernando C, Arana-Ceballos Fernando A, Trejo-Téllez Libia Iris, Skirycz Aleksandra, Brearley Charles A, Dörmann Peter, Mueller-Roeber Bernd
University of Potsdam, Institute of Biochemistry and Biology, Karl-Liebknecht-Strasse 24-25, Haus 20, Golm/Potsdam D-14476, Germany.
J Biol Chem. 2005 Oct 14;280(41):34888-99. doi: 10.1074/jbc.M506859200. Epub 2005 Aug 4.
Diacylglycerol kinase (DGK) regulates the level of the second messenger diacylglycerol and produces phosphatidic acid (PA), another signaling molecule. The Arabidopsis thaliana genome encodes seven putative diacylglycerol kinase isozymes (named AtDGK1 to -7), structurally falling into three major clusters. So far, enzymatic activity has not been reported for any plant Cluster II DGK. Here, we demonstrate that a representative of this cluster, AtDGK7, is biochemically active when expressed as a recombinant protein in Escherichia coli. AtDGK7, encoded by gene locus At4g30340, contains 374 amino acids with an apparent molecular mass of 41.2 kDa. AtDGK7 harbors an N-terminal catalytic domain, but in contrast to various characterized DGKs (including AtDGK2), it lacks a cysteine-rich domain at its N terminus, and, importantly, its C-terminal DGK accessory domain is incomplete. Recombinant AtDGK7 expressed in E. coli exhibits Michaelis-Menten type kinetics with 1,2-dioleoyl-sn-glycerol as substrate. AtDGK7 activity was affected by pH, detergents, and the DGK inhibitor R59022. We demonstrate that both AtDGK2 and AtDGK7 phosphorylate diacylglycerol molecular species that are typically found in plants, indicating that both enzymes convert physiologically relevant substrates. AtDGK7 is expressed throughout the Arabidopsis plant, but expression is strongest in flowers and young seedlings. Expression of AtDGK2 is transiently induced by wounding. R59022 at approximately 80 mum inhibits root elongation and lateral root formation and reduces plant growth, indicating that DGKs play an important role in plant development.
二酰基甘油激酶(DGK)调节第二信使二酰基甘油的水平,并产生另一种信号分子磷脂酸(PA)。拟南芥基因组编码七种假定的二酰基甘油激酶同工酶(命名为AtDGK1至-7),在结构上分为三个主要簇。到目前为止,尚未报道任何植物II类簇DGK的酶活性。在这里,我们证明该簇的一个代表AtDGK7在大肠杆菌中作为重组蛋白表达时具有生化活性。AtDGK7由基因座At4g30340编码,包含374个氨基酸,表观分子量为41.2 kDa。AtDGK7具有一个N端催化结构域,但与各种已表征的DGK(包括AtDGK2)不同,它在N端缺乏富含半胱氨酸的结构域,重要的是,其C端DGK辅助结构域不完整。在大肠杆菌中表达的重组AtDGK7以1,2-二油酰基-sn-甘油为底物表现出米氏动力学。AtDGK7的活性受pH、去污剂和DGK抑制剂R59022的影响。我们证明AtDGK2和AtDGK7都能磷酸化植物中常见的二酰基甘油分子种类,这表明这两种酶都能转化生理相关底物。AtDGK7在整个拟南芥植株中表达,但在花和幼苗中表达最强。AtDGK2的表达受创伤瞬时诱导。约80 μM的R59022抑制根伸长和侧根形成并降低植物生长,这表明DGK在植物发育中起重要作用。