Moffatt B A, Wang L, Allen M S, Stevens Y Y, Qin W, Snider J, von Schwartzenberg K
Department of Biology, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.
Plant Physiol. 2000 Dec;124(4):1775-85. doi: 10.1104/pp.124.4.1775.
To assess the functional significance of adenosine salvage in plants, the cDNAs and genes encoding two isoforms of adenosine kinase (ADK) were isolated from Arabidopsis. The ADK1- and ADK2-coding sequences are very similar, sharing 92% and 89% amino acid and nucleotide identity, respectively. Each cDNA was overexpressed in Escherichia coli, and the catalytic activity of each isoform was determined. Both ADKs had similar catalytic properties with a K(m) and V(max)/K(m) for adenosine of 0.3 to 0.5 microM and 5.4 to 22 L min(-1) mg(-1) protein, respectively. The K(m) and V(max)/K(m) for the cytokinin riboside N(6)(isopentenyl) adenosine are 3 to 5 microM and 0.021 to 0.14 L min(-1) mg(-1) protein, respectively, suggesting that adenosine is the preferred substrate for both ADK isoforms. In Arabidopsis plants, both ADK genes are expressed constitutively, with the highest steady-state mRNA levels being found in stem and root. ADK1 transcript levels were generally higher than those of ADK2. ADK enzyme activity reflected relative ADK protein levels seen in immunoblots for leaves, flowers, and stems but only poorly so for roots, siliques, and dry seeds. The catalytic properties, tissue accumulation, and expression levels of these ADKs suggest that they play a key metabolic role in the salvage synthesis of adenylates and methyl recycling in Arabidopsis. They may also contribute to cytokinin interconversion.
为了评估植物中腺苷补救途径的功能意义,从拟南芥中分离出了编码两种腺苷激酶(ADK)同工型的cDNA和基因。ADK1和ADK2的编码序列非常相似,氨基酸和核苷酸的同一性分别为92%和89%。每个cDNA在大肠杆菌中过表达,并测定了每种同工型的催化活性。两种ADK具有相似的催化特性,腺苷的K(m)和V(max)/K(m)分别为0.3至0.5 microM和5.4至22 L min(-1) mg(-1)蛋白质。细胞分裂素核糖苷N(6)(异戊烯基)腺苷的K(m)和V(max)/K(m)分别为3至5 microM和0.021至0.14 L min(-1) mg(-1)蛋白质,这表明腺苷是两种ADK同工型的首选底物。在拟南芥植物中,两个ADK基因均组成型表达,在茎和根中稳态mRNA水平最高。ADK1转录水平通常高于ADK2。ADK酶活性反映了在叶片、花朵和茎的免疫印迹中观察到的相对ADK蛋白水平,但在根、角果和干种子中反映较差。这些ADK的催化特性、组织积累和表达水平表明,它们在拟南芥的腺苷酸补救合成和甲基循环中起关键的代谢作用。它们也可能有助于细胞分裂素的相互转化。