Lecommandeur D, Sirou Y, Laurière C
Laboratoire de Physiologie des Organes Végétaux, CNRS, Meudon, France.
Arch Biochem Biophys. 1990 Apr;278(1):245-50. doi: 10.1016/0003-9861(90)90254-v.
alpha-Amylases from germinated maize, oats, rice, and sorghum were isolated by glycogen precipitation and hydrophobic interaction chromatography. Several methods were used for the detection of glycoproteins, including barley alpha-amylase isozymes purified as previously described and using the rice alpha-amylase as a positive control for glycosylation. Affinoblotting using concanavalin A, immunoblotting using a xylose-specific serum which reacts with complex N-linked glycans, and endo-beta-N-acetylglucosaminidase H treatment of amylases gave negative results for maize, oats, sorghum, and barley. However, after deglycosylation with trifluoromethanesulfonic acid, the molecular weight of one maize alpha-amylase constituent was clearly decreased. The same result was obtained after beta-elimination in mild conditions. Together these results indicated probable O-linked glycosylation of one maize alpha-amylase when barley, oats, and sorghum alpha-amylases did not appear to be glycosylated. Chemical deglycosylation of rice alpha-amylase resulted in the production of two polypeptides with different molecular weights.
通过糖原沉淀和疏水相互作用色谱法从发芽的玉米、燕麦、水稻和高粱中分离出α-淀粉酶。使用了几种方法检测糖蛋白,包括按先前所述方法纯化的大麦α-淀粉酶同工酶,并使用水稻α-淀粉酶作为糖基化的阳性对照。使用伴刀豆球蛋白A进行亲和印迹、使用与复杂N-连接聚糖反应的木糖特异性血清进行免疫印迹以及对淀粉酶进行内切β-N-乙酰氨基葡萄糖苷酶H处理,结果显示玉米、燕麦、高粱和大麦均呈阴性。然而,用三氟甲磺酸去糖基化后,一种玉米α-淀粉酶成分的分子量明显降低。在温和条件下进行β-消除后也得到了相同的结果。这些结果共同表明,一种玉米α-淀粉酶可能存在O-连接糖基化,而大麦、燕麦和高粱的α-淀粉酶似乎未发生糖基化。水稻α-淀粉酶的化学去糖基化产生了两种分子量不同的多肽。