Monks D E, Goode J H, Dewey R E
Department of Crop Science, North Carolina State University, Raleigh 27695-7620, USA.
Plant Physiol. 1996 Apr;110(4):1197-205. doi: 10.1104/pp.110.4.1197.
An expressed sequence tag from Arabidopsis that displayed sequence homology to mammalian and yeast choline kinases was used to isolate choline kinase-like cDNAs from soybean (Glycine max L.). Two distinct cDNAs, designated GmCK1 and GmCK2, were recovered that possessed full-length reading frames, each sharing approximately 32% identity at the predicted amino acid level with the rat choline kinase. A third unique choline kinase-like cDNA, GmCK3, was also identified but was not full length. Heterologous expression of GmCK1 in yeast (Saccharomyces cerevisiae) and GmCK2 in both yeast and Escherichia coli demonstrated that each encodes choline kinase activity. In addition to choline, other potential substrates for the choline kinase enzyme include ethanolamine, monomethylethanolamine (MME), and dimethylethanolamine (DME). Both soybean choline kinase isoforms demonstrated negligible ethanolamine kinase activity. Competitive inhibition assays, however, revealed very distinct differences in their responses to DME and MME. DME effectively inhibited only the GmCK2-encoded choline kinase activity. Although MME failed to effectively inhibit either reaction, an unexpected enhancement of choline kinase activity was observed specifically with the GmCK1-encoded enzyme. These results show that choline kinase is encoded by a small, multigene family in soybean comprising two or more distinct isoforms that exhibit both similarities and differences with regard to substrate specificity.
利用拟南芥中一个与哺乳动物和酵母胆碱激酶具有序列同源性的表达序列标签,从大豆(Glycine max L.)中分离出胆碱激酶样cDNA。获得了两个不同的cDNA,命名为GmCK1和GmCK2,它们具有全长阅读框,在预测的氨基酸水平上与大鼠胆碱激酶的同源性约为32%。还鉴定出第三个独特的胆碱激酶样cDNA GmCK3,但它不是全长的。GmCK1在酵母(Saccharomyces cerevisiae)中的异源表达以及GmCK2在酵母和大肠杆菌中的异源表达表明它们都编码胆碱激酶活性。除胆碱外,胆碱激酶的其他潜在底物包括乙醇胺、单甲基乙醇胺(MME)和二甲基乙醇胺(DME)。两种大豆胆碱激酶同工型的乙醇胺激酶活性都可忽略不计。然而,竞争性抑制试验揭示了它们对DME和MME的反应存在非常明显的差异。DME仅有效抑制GmCK2编码的胆碱激酶活性。虽然MME未能有效抑制任何一种反应,但特别在GmCK1编码的酶中观察到胆碱激酶活性意外增强。这些结果表明,胆碱激酶由大豆中的一个小的多基因家族编码,该家族包含两个或更多不同的同工型,它们在底物特异性方面既有相似之处又有差异。