Sagane Yoshimasa, Nakagawa Tomoyuki, Yamamoto Kosuke, Michikawa Soichi, Oguri Suguru, Momonoki Yoshie S
Faculty of Bioindustry, Tokyo University of Agriculture, Hokkaido 0992493, Japan.
Plant Physiol. 2005 Jul;138(3):1359-71. doi: 10.1104/pp.105.062927. Epub 2005 Jun 24.
Acetylcholinesterase (AChE) has been increasingly recognized in plants by indirect evidence of its activity. Here, we report purification and cloning of AChE from maize (Zea mays), thus providing to our knowledge the first direct evidence of the AChE molecule in plants. AChE was identified as a mixture of disulfide- and noncovalently linked 88-kD homodimers consisting of 42- to 44-kD polypeptides. The AChE hydrolyzed acetylthiocholine and propyonylthiocholine, but not S-butyrylthiocholine, and the AChE-specific inhibitor neostigmine bromide competitively inhibited its activity, implying that maize AChE functions in a similar manner as the animal enzyme. However, kinetic analyses indicated that maize AChE showed a lower affinity to substrates and inhibitors than animal AChE. The full-length cDNA of maize AChE gene is 1,471 nucleotides, which encode a protein having 394 residues, including a signal peptide. The deduced amino acid sequence exhibited no apparent similarity with that of the animal enzyme, although the catalytic triad was the same as in the animal AChE. In silico screening indicated that maize AChE homologs are widely distributed in plants but not in animals. These findings lead us to propose that the AChE family, as found here, comprises a novel family of the enzymes that is specifically distributed in the plant kingdom.
通过乙酰胆碱酯酶(AChE)活性的间接证据,其在植物中的存在已得到越来越多的认可。在此,我们报告了从玉米(Zea mays)中纯化和克隆AChE的过程,据我们所知,这为植物中存在AChE分子提供了首个直接证据。AChE被鉴定为由42至44kD多肽组成的二硫键连接和非共价连接的88kD同型二聚体混合物。该AChE可水解乙酰硫代胆碱和丙酰硫代胆碱,但不能水解S-丁酰硫代胆碱,且AChE特异性抑制剂溴新斯的明可竞争性抑制其活性,这表明玉米AChE的功能与动物酶类似。然而,动力学分析表明,玉米AChE对底物和抑制剂的亲和力低于动物AChE。玉米AChE基因的全长cDNA为1471个核苷酸,编码一个含有394个残基的蛋白质,包括一个信号肽。尽管催化三联体与动物AChE相同,但推导的氨基酸序列与动物酶没有明显的相似性。电子筛选表明,玉米AChE同源物广泛分布于植物中,但在动物中未发现。这些发现使我们提出,本文所发现的AChE家族构成了一个专门分布于植物界的新型酶家族。