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The carnitine biosynthetic pathway in Arabidopsis thaliana shares similar features with the pathway of mammals and fungi

机译:拟南芥中的肉碱生物合成途径与哺乳动物和真菌的途径具有相似的特征

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摘要

Carnitine is an essential quaternary ammonium amino acid that occurs in the microbial, plant and animal kingdoms. The role and synthesis of this compound are very well documented in bacteria, fungi and mammals. On the contrary, although the presence of carnitine in plant tissue has been reported four decades ago and information about its biological implication are available, nothing is known about its synthesis in plants. We designed experiments to determine if the carnitine biosynthetic pathway in Arabidopsis thaliana is similar to the pathway in mammals and in the fungi Neurospora crassa and Candida albicans. We first checked for the presence of trimetyllysine (TML) and γ-butyrobetaine (γ-BB), two precursors of carnitine in fungi and in mammals, using liquid chromatography-electrospray ionization tandem mass spectrometry (LC-ESI-MS/MS). Both compounds were shown to be present in plant extracts at concentrations in the picomole range per mg of dry weight. We next synthesized deuterium-labeled TML and transferred A. thaliana seedlings on growth medium supplemented with 1 mM of the deuterated precursor. LC-ESI-MS/MS analysis of plant extracts clearly highlighted the synthesis of deuterium labeled γ-BB and labeled carnitine in deuterated-TML fed plants. The similarities between plant, fungal and mammalian pathways provide very useful information to search homologies between genomes. As a matter of fact the analysis of A. thaliana protein database provides homology for several enzymes responsible for carnitine synthesis in fungi and mammals. The study of mutants affected in the corresponding genes would be very useful to elucidate the plant carnitine biosynthetic pathway and to investigate further the role of carnitine in plant physiology.
机译:肉碱是一种必不可少的季铵氨基酸,存在于微生物,植物和动物界。该化合物的作用和合成已在细菌,真菌和哺乳动物中得到了很好的证明。相反,尽管四十年前已经报道了植物组织中肉碱的存在,并且可获得有关其生物意义的信息,但对其在植物中的合成一无所知。我们设计了实验以确定拟南芥中的肉碱生物合成途径是否与哺乳动物以及真菌Neurospora crassa和白色念珠菌中的途径相似。我们首先使用液相色谱-电喷雾串联质谱(LC-ESI-MS / MS)检查了真菌和哺乳动物中肉碱的两种前体三甲酰赖氨酸(TML)和γ-丁甜菜碱(γ-BB)的存在。两种化合物都显示在植物提取物中,其浓度为每毫克干重在picomole范围内。接下来,我们合成了氘标记的TML,并将拟南芥幼苗转移到补充了1 mM氘代前体的生长培养基上。植物提取物的LC-ESI-MS / MS分析清楚地突出了氘代TML饲喂的植物中氘标记的γ-BB和肉碱的合成。植物,真菌和哺乳动物途径之间的相似性为搜索基因组之间的同源性提供了非常有用的信息。实际上,拟南芥蛋白质数据库的分析提供了与真菌和哺乳动物中的肉碱合成有关的几种酶的同源性。研究受相应基因影响的突变体对于阐明植物肉碱的生物合成途径以及进一步研究肉碱在植物生理学中的作用将非常有用。

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