United States Department of Agriculture, Agricultural Research Service, Cereal Crops Research Unit, Madison, Wisconsin 53705.
Plant Physiol. 1988 Dec;88(4):1454-60. doi: 10.1104/pp.88.4.1454.
A proteinase was purified from germinated barley (green malt from Hordeum vulgare L. cv Morex) by acidic extraction, ammonium sulfate fractionation and successive chromatographies on CM-cellulose, hemoglobin sepharose, Sephadex G-75 and organomercurial agarose columns. The overall purification and final recovery were 290-fold and 7.5%, respectively. The purified enzyme was homogeneous on analytical gel electrophoresis, yielding a single protein associated with protease activity. An apparent molecular weight of about 20 kilodaltons was estimated for the native enzyme from gel filtration. SDS-gel electrophoresis revealed a single polypeptide of about 30 kilodaltons. The optimum pH for the hydrolysis of hemoglobin was around 3.8. The enzyme was strongly inhibited by leupeptin but was insensitive to phenylmethylsulfonyl fluoride, indicating that it was a cysteine proteinase. It hydrolyzed several large proteins from various origins. The ability of the enzyme to digest barley storage proteins in vitro was examined using SDS-gel electrophoresis. The hydrolysis patterns obtained showed that the enzyme rapidly hydrolyzed the large hordein polypeptides into relatively small fragments. The results of this study suggest that this 30 kilodalton enzyme is one of the predominant cysteine proteinases secreted into the starchy endosperm during barley germination and that it plays a major role in the mobilization of storage proteins.
一种蛋白酶从发芽的大麦(大麦品种 Morex 的绿麦芽)中通过酸性提取、硫酸铵分级和依次在 CM-纤维素、血红蛋白琼脂糖、Sephadex G-75 和有机汞琼脂糖柱上进行色谱分离而被纯化。整体的纯化和最终的回收率分别为 290 倍和 7.5%。纯化的酶在分析凝胶电泳中是均一的,产生与蛋白酶活性相关的单一蛋白质。从凝胶过滤法估计天然酶的表观分子量约为 20 千道尔顿。SDS-凝胶电泳显示约 30 千道尔顿的单一多肽。血红蛋白水解的最适 pH 值约为 3.8。该酶被亮抑肽强烈抑制,但对苯甲基磺酰氟不敏感,表明它是一种半胱氨酸蛋白酶。它水解来自各种来源的几种大型蛋白质。使用 SDS-凝胶电泳检查了该酶在体外消化大麦贮藏蛋白的能力。获得的水解图谱表明,该酶迅速将大型醇溶蛋白多肽水解成相对较小的片段。这项研究的结果表明,这种 30 千道尔顿的酶是在大麦发芽过程中分泌到淀粉胚乳中的主要半胱氨酸蛋白酶之一,它在贮藏蛋白的动员中起主要作用。