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从欧洲赤松(Pinus sylvestris L.)中克隆并功能表达一种具有松白藜醇甲基转移酶活性的应激诱导多功能O-甲基转移酶。

Molecular cloning and functional expression of a stress-induced multifunctional O-methyltransferase with pinosylvin methyltransferase activity from Scots pine (Pinus sylvestris L.).

作者信息

Chiron H, Drouet A, Claudot A C, Eckerskorn C, Trost M, Heller W, Ernst D, Sandermann H

机构信息

GSF-National Research Center for Environment and Health, Institute of Biochemical Plant Pathology, Neuherberg, Germany.

出版信息

Plant Mol Biol. 2000 Dec;44(6):733-45. doi: 10.1023/a:1026507707186.

Abstract

Formation of pinosylvin (PS) and pinosylvin 3-O-monomethyl ether (PSM), as well as the activities of stilbene synthase (STS) and S-adenosyl-1-methionine (SAM):pinosylvin O-methyltransferase (PMT), were induced strongly in needles of Scots pine seedlings upon ozone treatment, as well as in cell suspension cultures of Scots pine upon fungal elicitation. A SAM-dependent PMT protein was purified and partially characterised. A cDNA encoding PMT was isolated from an ozone-induced Scots pine cDNA library. Southern blot analysis of the genomic DNA suggested the presence of a gene family. The deduced protein sequence showed the typical highly conserved regions of O-methyltransferases (OMTs), and average identities of 20-56% to known OMTs. PMT expressed in Escherichia coli corresponded to that of purified PMT (40 kDa) from pine cell cultures. The recombinant enzyme catalysed the methylation of PS, caffeic acid, caffeoyl-CoA and quercetin. Several other substances, such as astringenin, resveratrol, 5-OH-ferulic acid, catechol and luteolin, were also methylated. Recombinant PMT thus had a relatively broad substrate specificity. Treatment of 7-year old Scots pine trees with ozone markedly increased the PMT mRNA level. Our results show that PMT represents a new SAM-dependent OMT for the methylation of stress-induced pinosylvin in Scots pine needles.

摘要

在臭氧处理后的欧洲赤松幼苗针叶中,以及在真菌诱导后的欧洲赤松细胞悬浮培养物中,均强烈诱导了松二氢菲(PS)和松二氢菲3 - O - 单甲醚(PSM)的形成,以及芪合酶(STS)和S - 腺苷 - 1 - 甲硫氨酸(SAM):松二氢菲O - 甲基转移酶(PMT)的活性。一种依赖SAM的PMT蛋白被纯化并进行了部分特性分析。从臭氧诱导的欧洲赤松cDNA文库中分离出了编码PMT的cDNA。基因组DNA的Southern印迹分析表明存在一个基因家族。推导的蛋白质序列显示了O - 甲基转移酶(OMT)典型的高度保守区域,与已知OMT的平均同源性为20 - 56%。在大肠杆菌中表达的PMT与从松树细胞培养物中纯化的PMT(40 kDa)相对应。重组酶催化了PS、咖啡酸、咖啡酰辅酶A和槲皮素的甲基化。其他几种物质,如紫杉叶素、白藜芦醇、5 - 羟基阿魏酸、儿茶酚和木犀草素,也被甲基化。因此,重组PMT具有相对较宽的底物特异性。用臭氧处理7年生欧洲赤松显著提高了PMT mRNA水平。我们的结果表明,PMT是一种新的依赖SAM的OMT,用于欧洲赤松针叶中应激诱导的松二氢菲的甲基化。

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