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首页> 外文期刊>Plant physiology >beta-Alanine N-methyltransferase of Limonium latifolium. cDNA cloning and functional expression of a novel N-methyltransferase implicated in the synthesis of the osmoprotectant beta-alanine betaine
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beta-Alanine N-methyltransferase of Limonium latifolium. cDNA cloning and functional expression of a novel N-methyltransferase implicated in the synthesis of the osmoprotectant beta-alanine betaine

机译:枸杞的β-丙氨酸N-甲基转移酶。涉及渗透保护剂β-丙氨酸甜菜碱合成的新型N-甲基转移酶的cDNA克隆和功能表达

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摘要

beta-alanine (Ala) betaine, an osmoprotectant suitable under saline and hypoxic environments, is found in most members of the halophytic plant family Plumbaginaceae. In Limonium latifolium (Plumbaginaceae), it is synthesized via methylation of beta-Ala by the action of a trifunctional S-adenosyl L-methionine (Ado-Met): beta-Ala N-methyltransferase (NMTase). Peptide sequences from purified beta-Ala NMTase were used to design primers for reverse transcriptase-PCR, and several cDNA clones were isolated. The 5' end of the cDNA was cloned using a 5'-rapid amplification of cDNA ends protocol. A 500-bp cDNA was used as a probe to screen a lambda-gt10 L. latifolium leaf cDNA library. Partial cDNA clones represented two groups, NMTase A and NMTase B, differing only in their 3'-untranslated regions. The full-length NMTase A cDNA was 1,414 bp and included a 1128-bp open reading frame and a 119-bp 5'-untranslated region. The deduced amino acid sequence of 375 residues had motifs known to be involved in the binding of Ado-Met. The NMTase mRNA was expressed in L. latifolium leaves but was absent in Limonium sinuatum, a member of the genus that lacks the synthetic pathway for beta-Ala betaine. NMTase mRNA expression was high in young and mature leaves and was enhanced by light. NMTase cDNA was expressed in yeast (Saccharomyces cerevisiae) under the control of a galactose-inducible promoter. Protein extracts of galactose-induced recombinant yeast had Ado-Met-specific NMTase activities that were highly specific to beta-Ala, N-methyl beta-Ala, and N,N-dimethyl beta-Ala as methyl acceptors. NMTase activities were not detectable in comparable protein extracts of yeast, transformed with vector control. The NMTase protein sequence shared homology with plant caffeic acid O-methyltransferases and related enzymes. Phylogenetic analyses suggested that beta-Ala NMTase represents a novel family of N-methyltransferases that are evolutionarily related to O-methyltransferases.
机译:β-丙氨酸(Ala)甜菜碱是一种适用于盐和低氧环境的渗透保护剂,被发现于盐生植物科的大多数成员中。在la叶枸杞(Plumbaginaceae)中,它是通过三官能S-腺苷L-蛋氨酸(Ado-Met):β-AlaN-甲基转移酶(NMTase)的作用使β-Ala甲基化而合成的。使用纯化的β-AlaNMTase的肽序列设计逆转录酶PCR的引物,并分离出几个cDNA克隆。 cDNA的5'末端使用cDNA末端方案的5'-快速扩增来克隆。使用500 bp cDNA作为探针筛选lambda-gt10 L. latifolium叶cDNA文库。部分cDNA克隆代表两组,即NMTase A和NMTase B,仅在3'-非翻译区不同。全长NMTase A cDNA为1,414 bp,包括一个1128-bp开放阅读框和119-bp 5'非翻译区。推定的375个残基的氨基酸序列具有已知参与Ado-Met结合的基序。 NMTase mRNA在L. latifolium叶片中表达,但在Limonium sinuatum中缺失,而Limonium sinuatum是缺少β-Ala甜菜碱合成途径的属之一。 NMTase mRNA表达在幼叶和成熟叶中较高,并且受光增强。 NMTase cDNA在半乳糖诱导型启动子的控制下在酵母中表达(酿酒酵母)。半乳糖诱导的重组酵母的蛋白质提取物具有Ado-Met特异性NMTase活性,该活性对作为甲基受体的β-Ala,N-甲基β-Ala和N,N-二甲基β-Ala具有高度特异性。在用载体对照转化的可比较的酵母蛋白质提取物中无法检测到NMTase活性。 NMTase蛋白序列与植物咖啡酸O-甲基转移酶和相关酶具有同源性。系统发育分析表明,β-丙氨酸NMTase代表了一个新的N-甲基转移酶家族,与O-甲基转移酶进化相关。

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