Bolwell G P
Biochem J. 1984 Sep 1;222(2):427-35. doi: 10.1042/bj2220427.
Suspension-cultured cells of Phaseolus vulgaris (French bean) incorporated [1-3H] arabinose in vivo into high-Mr polymers that could be separated into glycoprotein and polysaccharide. Microsomal membranes from suspension-cultured cells of beans incorporated arabinose from UDP-beta-L-arabinose in vitro into both polysaccharide and glycoprotein. The enzyme involved in arabinan synthesis, arabinan synthase, appeared to be immunologically distinct from the protein:arabinosyltransferase system. Both these activities are inducible, but behave differently with either plant-growth-regulator or fungal-elicitor treatments. After subculture of cells entering the stationary growth phase the arabinan synthase activity reaches much higher values than does that of the protein transferase system during the initial period of cell division and growth, whereas after elicitation at the same growth stage, all the increased incorporation of arabinose occurs into glycoprotein of Mr higher than 200 000 and to a greater extent into a specific glycoprotein of Mr 42 500. Preliminary characterization of these glycoproteins prepared under non-reducing conditions and after acid and alkaline hydrolysis suggests that the high-Mr glycoprotein material is similar to arabinogalactan protein, whereas the lower-Mr material may be a hydroxyproline-rich protein existing as a dimer and that specifically increases during the hypersensitive response of the cells to the fungal elicitor from Colletotrichum lindemuthianum.
菜豆悬浮培养细胞在体内将[1-³H]阿拉伯糖掺入高分子量聚合物中,这些聚合物可分离为糖蛋白和多糖。菜豆悬浮培养细胞的微粒体膜在体外将UDP-β-L-阿拉伯糖中的阿拉伯糖掺入多糖和糖蛋白中。参与阿拉伯聚糖合成的酶——阿拉伯聚糖合酶,在免疫学上似乎与蛋白质:阿拉伯糖基转移酶系统不同。这两种活性都是可诱导的,但在植物生长调节剂或真菌激发子处理下表现不同。处于静止生长期的细胞继代培养后,在细胞分裂和生长的初始阶段,阿拉伯聚糖合酶活性达到的值远高于蛋白质转移酶系统;而在相同生长阶段激发后,所有增加的阿拉伯糖掺入都发生在分子量高于200 000的糖蛋白中,并且在更大程度上掺入到分子量为42 500的特定糖蛋白中。在非还原条件下以及酸和碱水解后制备的这些糖蛋白的初步表征表明,高分子量糖蛋白物质类似于阿拉伯半乳聚糖蛋白,而低分子量物质可能是一种以二聚体形式存在的富含羟脯氨酸的蛋白质,并且在细胞对来自菜豆炭疽菌的真菌激发子的过敏反应期间特异性增加。