Lin C Y, Chia S L, Travis R L, Key J L
Department of Botany, University of Georgia, Athens, Georgia 30602.
Plant Physiol. 1975 Jul;56(1):39-43. doi: 10.1104/pp.56.1.39.
Ribosomal subunits prepared by NH(4)Cl dissociation (0.5 m) of the monomeric ribosomes were much less active in in vitro protein synthesis than those prepared by KCl dissociation. The decrease in activity correlated with a detachment of some proteins (L(2) and L(9) as shown by gel electrophoresis) within the 60S ribosomal subunits. Subunits prepared with 0.3 m NH(4)Cl retained L(2) and L(9), but the activity remained low. Incubation of these 60S subunits in TKM buffer (50 mm tris [pH 7.5], 20 mm KCl, and 5 mm MgCl(2)) for 20 min at 37 C restored the activity almost to the level of those obtained by KCl dissociation. Treatment of the 0.3 m NH(4)Cl-derived 60S subunits with a protein reagent, Procion brilliant blue, prior to extraction of the ribosomal proteins resulted in the loss of L(2) and L(9), showing that these proteins were made accessible for dye binding. These observations suggest that a considerable degree of unfolding of the 60S subunit occurs at 0.3 m NH(4)Cl (this apparently leads to a preferential detachment of L(2) and L(9) at 0.5 m NH(4)Cl) and that the activity of the purified subunits depends not only on the presence of L(2) and L(9) but also on the organization of these proteins within the 60S subunits.
通过用0.5M氯化铵解离单体核糖体所制备的核糖体亚基,在体外蛋白质合成中的活性比用氯化钾解离制备的亚基低得多。活性的降低与60S核糖体亚基内一些蛋白质(如凝胶电泳所示的L(2)和L(9))的脱离相关。用0.3M氯化铵制备的亚基保留了L(2)和L(9),但其活性仍然很低。将这些60S亚基在TKM缓冲液(50mM三羟甲基氨基甲烷[pH 7.5]、20mM氯化钾和5mM氯化镁)中于37℃孵育20分钟,活性几乎恢复到用氯化钾解离获得的亚基的水平。在用蛋白质试剂普施安亮蓝处理由0.3M氯化铵衍生的60S亚基后,再提取核糖体蛋白质,导致L(2)和L(9)丢失,表明这些蛋白质变得可与染料结合。这些观察结果表明,在0.3M氯化铵浓度下60S亚基发生了相当程度的解折叠(这显然导致在0.5M氯化铵浓度下L(2)和L(9)优先脱离),并且纯化亚基的活性不仅取决于L(2)和L(9)的存在,还取决于这些蛋白质在60S亚基内的组织方式。