Guerrier-Takada C, Altman S
Department of Biology, Yale University, New Haven, Connecticut 06520.
Biochemistry. 1993 Jul 20;32(28):7152-61. doi: 10.1021/bi00079a012.
A gel-shift assay was devised to detect stable enzyme-substrate (E-S) complexes between M1 RNA, the catalytic subunit of RNase P from Escherichia coli, and its tRNA precursor substrates. The use of deletion derivatives of M1 RNA in the gel-shift assay has allowed us to identify regions of the enzyme that are involved in the binding of the substrate or that are necessary for catalytic activity. Fragments of substrates that contain the 3' CCA sequence bind preferentially to regions in the 5' half of M1 RNA, while 5' leader sequences interact primarily with regions in the 3' half of M1 RNA. The 5' leader sequence present in the precursor to tRNA(Tyr)su3 from E. coli plays an important role in the formation of stable E-S complexes with M1 RNA. The CCA sequence at the 3' end of precursor tRNA substrates is involved in the product-release step of the reaction that is catalyzed by M1 RNA. Direct measurements of the concentrations of all the components in the reaction catalyzed by M1 RNA facilitated a new approach to the kinetic analysis of the action of the enzyme.
设计了一种凝胶迁移试验来检测大肠杆菌核糖核酸酶P的催化亚基M1 RNA与其tRNA前体底物之间稳定的酶-底物(E-S)复合物。在凝胶迁移试验中使用M1 RNA的缺失衍生物使我们能够确定该酶中参与底物结合或催化活性所必需的区域。含有3' CCA序列的底物片段优先结合到M1 RNA 5' 端的区域,而5' 前导序列主要与M1 RNA 3' 端的区域相互作用。大肠杆菌tRNA(Tyr)su3前体中存在的5' 前导序列在与M1 RNA形成稳定的E-S复合物中起重要作用。前体tRNA底物3' 端的CCA序列参与了由M1 RNA催化的反应的产物释放步骤。对M1 RNA催化反应中所有成分浓度的直接测量促进了一种对该酶作用进行动力学分析的新方法。