Stafford H A
Department of Biology, Reed College, Portland, Oregon 97202.
Plant Physiol. 1975 Feb;55(2):145-9. doi: 10.1104/pp.55.2.145.
The large, partly microsomal aggregate containing 4-hydroxycinnamate hydroxylase activity isolated from green leaves of Sorghum bicolor at pH 6 was obtained instead as intermediate molecular weight forms when green leaves were ground in the presence of 10 mm mercaptoethanol or dithiothreitol. Elution profiles from agarose (Bio-Gel A-15m and A-1.5m) columns indicated that the 4-hydroxycinnamate hydroxylase activity was due either to multiple forms or to a mixture of forms in various stages of dissociation, the largest being eluted just after the void volume from an agarose 1.5m column. The larger form was similar to the major one found previously in etiolated leaves and was precipitated in the same ammonium sulfate fraction. The activity was unstable, but could be reactivated by incubation of the undiluted enzyme extract alone at 30 C prior to the assay. The data indicate that disulfide bonds are involved in the in vivo formation of the large aggregate in green leaves as well as being necessary for the maintenance of optimal activity of smaller polymeric forms in vitro.
当在10 mM巯基乙醇或二硫苏糖醇存在下研磨绿叶时,从双色高粱绿叶中分离出的含有4-羟基肉桂酸羟化酶活性的大的、部分微粒体聚集体,反而以中等分子量形式获得。来自琼脂糖(Bio-Gel A-15m和A-1.5m)柱的洗脱曲线表明,4-羟基肉桂酸羟化酶活性要么归因于多种形式,要么归因于处于不同解离阶段的形式混合物,最大的形式在琼脂糖1.5m柱的空体积之后立即被洗脱。较大的形式与先前在黄化叶片中发现的主要形式相似,并在相同的硫酸铵级分中沉淀。该活性不稳定,但在测定前通过单独将未稀释的酶提取物在30℃孵育可重新激活。数据表明,二硫键参与绿叶中大型聚集体的体内形成,并且对于维持体外较小聚合物形式的最佳活性也是必需的。