Woolley L C, James D J, Manning K
Horticulture Research International, Wellesbourne, Warwick, CV35 9EF, UK.
Planta. 2001 Nov;214(1):11-21. doi: 10.1007/s004250100577.
An endo-beta-1,4-glucanase (EG) was purified from ripe strawberry (Fragaria x ananassa Duch.) fruit using cellulose affinity chromatography. The purified enzyme gave a single protein band of 54 kDa on sodium dodecyl sulphate-polyacrylamide gel electrophoresis. The N-terminal amino acid sequence of this protein showed strong homology with the proteins encoded by recently identified EG genes from different strawberry cultivars and from Arabidopsis, pepper and tomato. The enzyme specifically cleaved the beta-1,4-glucosyl linkages of xyloglucan but was unable to hydrolyze those of insoluble cellulose. The pH optimum and Km of the enzyme against the artificial substrate carboxymethylcellulose (CMC) were pH 5.0-7.0 and 1.3 mg ml-1, respectively. To assess the role of the Cell enzyme in fruit softening a cDNA of the corresponding fruit-specific and ripening-enhanced strawberry gene, cell, was used to down-regulate cell gene expression in transgenic strawberry plants. In several primary transformants, cell mRNA was strongly suppressed in ripe fruit. However, the EG activity and firmness of these fruit were indistinguishable from those of control fruit. The expression of a second gene, cel2, encoding a different strawberry EG was unaltered in the fruits of these transformants. The presence of the cel2 transcript in transgenic plants may have prevented the specific down-regulation of cell from revealing its role in fruit softening.
采用纤维素亲和层析法从成熟草莓(凤梨草莓)果实中纯化出一种内切-β-1,4-葡聚糖酶(EG)。纯化后的酶在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳上呈现一条54 kDa的单一蛋白条带。该蛋白的N端氨基酸序列与最近从不同草莓品种以及拟南芥、辣椒和番茄中鉴定出的EG基因所编码的蛋白具有高度同源性。该酶特异性切割木葡聚糖的β-1,4-葡糖基连接,但无法水解不溶性纤维素的连接。该酶针对人工底物羧甲基纤维素(CMC)的最适pH值和Km分别为pH 5.0 - 7.0和1.3 mg ml-1。为了评估Cell酶在果实软化中的作用,利用相应的果实特异性且成熟增强的草莓基因cell的cDNA来下调转基因草莓植株中cell基因的表达。在几个初级转化体中,成熟果实中的cell mRNA被强烈抑制。然而,这些果实的EG活性和硬度与对照果实并无差异。在这些转化体的果实中,编码另一种草莓EG的第二个基因cel2的表达未发生改变。转基因植物中cel2转录本的存在可能阻止了cell的特异性下调从而揭示其在果实软化中的作用。