Laing William A, Frearson Nicky, Bulley Sean, MacRae Elspeth
Gene Technologies Sector, The Horticultural and Food Research Institute of NZ Ltd PB 92169, Auckland, NZ.
Funct Plant Biol. 2004 Nov;31(10):1015-1025. doi: 10.1071/FP04090.
l-Galactose dehydrogenase, an enzyme in the pathway of ascorbate biosynthesis, was purified to homogeneity from leaves of kiwifruit [Actinidia deliciosa (A.Chev.) CF Liang et AR Ferguson var. deliciosa 'Hayward']. The enzyme had a molecular mass of 34.2 kD, and behaved as a monomer during gel filtration. The K(galactose) and K(NAD) decreased as pH increased from 6.5 to 9, while the V increased over this range. A number of related sugars were tested as alternative substrates or inhibitors, but these were ineffective. Ascorbate caused slow inactivation of the enzyme, possibly through metal catalysed generation of oxygen radicals. Inactivation appeared to be active-site directed as it was protected by the substrate NAD, and not by NADH or l-galactose. This is not likely to be physiologically significant. Through partially sequencing the protein, the gene was identified in the HortResearch Actinidia EST database, and the translation of the full length sequence of this cDNA showed a high homology (80% identity, 90% similarity) to the translation of an Arabidopsis gene (accession CAD10386) and to translations of other genes identified in GenBank. Levels of l-GalDH activity decreased during fruit and leaf development, and levels of mRNA showed a similar reduction. Activity varied between flower parts, with ovaries and styles showing equivalent activity to young fruitlets and sink leaves. Nucleotide sequences reported are available in the Genbank database under the accession number AY176585 (kiwifruit) and AY264803 (apple).
L-半乳糖脱氢酶是抗坏血酸生物合成途径中的一种酶,从猕猴桃[美味猕猴桃(A.Chev.)CF Liang et AR Ferguson var. deliciosa 'Hayward']叶片中纯化至同质。该酶的分子量为34.2 kD,在凝胶过滤过程中表现为单体。随着pH从6.5增加到9,K(半乳糖)和K(NAD)降低,而在此范围内V增加。测试了许多相关糖类作为替代底物或抑制剂,但这些均无效。抗坏血酸导致该酶缓慢失活,可能是通过金属催化产生氧自由基。失活似乎是活性位点导向的,因为它受到底物NAD的保护,而不受NADH或L-半乳糖的保护。这在生理上可能并不重要。通过对该蛋白质进行部分测序,在园艺研究所猕猴桃EST数据库中鉴定出该基因,该cDNA全长序列的翻译与拟南芥基因(登录号CAD10386)的翻译以及GenBank中鉴定的其他基因的翻译具有高度同源性(80% 同一性,90% 相似性)。在果实和叶片发育过程中,L-半乳糖脱氢酶活性水平下降,mRNA水平也有类似下降。活性在花的不同部位有所不同,子房和花柱的活性与幼果和库叶相当。报道的核苷酸序列可在Genbank数据库中获取,登录号为AY176585(猕猴桃)和AY264803(苹果)。