Alawady Ali, Reski Ralf, Yaronskaya Elena, Grimm Bernhard
Institut für Biologie, Pflanzenphysiologie, Humboldt Universität, Philippstr.13, Haus 12, 10115 Berlin, Deutschland.
Plant Mol Biol. 2005 Mar;57(5):679-91. doi: 10.1007/s11103-005-1427-8.
S-adenosyl-L-methionine:Mg-protoporphyrin IX methyltransferase (MgPMT) is an enzyme in the Mg branch of the tetrapyrrole biosynthetic pathway. The nucleotide sequence of tobacco (Nicotiana tabacum) CHLM was identified and the cDNA sequence was used to express the precursor, the mature and a truncated recombinant MgPMT for enzymatic activity tests and for the formation of polyclonal antibodies. Comparison of the mature and the truncated MgPMT revealed three critical amino acids at the N-terminus of MgPMT for the maintenance of enzyme activity. To assess the contribution of CHLM expression to the control of the metabolic flow in the tetrapyrrole pathway, CHLM transcripts and protein levels, the enzyme activity and the steady-state levels of Mg protoporphyrin and Mg protoporphyrin monomethylester were analysed during greening of seedlings and plant development as well as under day/night and continuous growth conditions. These expression studies revealed posttranslational activation of MgPMT during greening and light/dark-cycles. Using the yeast two-hybrid system physical interaction was demonstrated between MgPMT and the CHLH subunit of Mg chelatase. Activity of recombinant MgPMT expressed in yeast cells was stimulated in the presence of the recombinant CHLH subunit. Implications for posttranslational regulation of MgPMT are discussed for the enzymatic steps at the beginning of the Mg branch.
S-腺苷-L-甲硫氨酸:镁原卟啉IX甲基转移酶(MgPMT)是四吡咯生物合成途径中镁分支的一种酶。鉴定了烟草(Nicotiana tabacum)CHLM的核苷酸序列,并使用该cDNA序列表达前体、成熟和截短的重组MgPMT,用于酶活性测试和多克隆抗体的制备。成熟和截短的MgPMT的比较揭示了MgPMT N端的三个关键氨基酸对于维持酶活性的重要性。为了评估CHLM表达对四吡咯途径中代谢流控制的贡献,在幼苗绿化和植物发育过程中以及在昼夜和连续生长条件下,分析了CHLM转录本和蛋白质水平、酶活性以及镁原卟啉和镁原卟啉单甲酯的稳态水平。这些表达研究揭示了绿化和光/暗循环过程中MgPMT的翻译后激活。使用酵母双杂交系统证明了MgPMT与镁螯合酶的CHLH亚基之间存在物理相互作用。在重组CHLH亚基存在的情况下,酵母细胞中表达的重组MgPMT的活性受到刺激。本文讨论了Mg分支起始酶促步骤中MgPMT翻译后调控的意义。