Guglielminetti L, Morita A, Yamaguchi J, Loreti E, Perata P, Alpi A
Dipartimento di Biologia delle Piante Agrarie, Sezione di Fisiologia Vegetale, via Mariscoglio 34, 56124 Pisa, Italy.
J Plant Res. 2006 Jul;119(4):351-6. doi: 10.1007/s10265-006-0281-3. Epub 2006 Apr 26.
Fructokinases (EC 2.7.1.4) may play an important role in carbohydrate metabolism of Oryza sativa L. (rice) seedlings under anoxia. We present here the molecular and biochemical characterizations of two rice fructokinases, namely OsFK1 and OsFK2. The results show that, at both a transcriptional and a transductional level, OsFK1 is preferentially expressed under aerobic conditions, whereas OsFK2 is induced under anoxia. Substrate inhibition was demonstrated for OsFK1, while OsFK2 appears to be largely unaffected by fructose concentrations up to 10 mM. Sugar modulation of anoxia-induced proteins has been proposed, but our results on rice calli treated with or without glucose (10, 30 or 90 mM) for different time indicate that neither OsFK1 nor OsFK2 are sugar-regulated. We propose that OsFK2 plays a major role in fructose phosphorylation under anoxic conditions.
果糖激酶(EC 2.7.1.4)可能在缺氧条件下的水稻幼苗碳水化合物代谢中发挥重要作用。我们在此展示了两种水稻果糖激酶,即OsFK1和OsFK2的分子和生化特性。结果表明,在转录和转导水平上,OsFK1在有氧条件下优先表达,而OsFK2在缺氧条件下被诱导表达。已证实OsFK1存在底物抑制现象,而高达10 mM的果糖浓度对OsFK2似乎基本没有影响。有人提出了糖对缺氧诱导蛋白的调节作用,但我们对用或不用葡萄糖(10、30或90 mM)处理不同时间的水稻愈伤组织的研究结果表明,OsFK1和OsFK2均不受糖调节。我们认为OsFK2在缺氧条件下的果糖磷酸化过程中起主要作用。