Karaoglu D, Thurlow D L
Department of Chemistry, Clark University, Worcester, MA 01610.
Nucleic Acids Res. 1991 Oct 11;19(19):5293-300. doi: 10.1093/nar/19.19.5293.
The interaction between ribosomal protein L11 from Escherichia coli and in vitro synthesized RNA containing its binding site from 23S rRNA was characterized by identifying nucleotides that interfered with complex formation when chemically modified by diethylpyrocarbonate or hydrazine. Chemically modified RNA was incubated with L11 under conditions appropriate for specific binding of L11 and the resulting protein-RNA complex was separated from unbound RNA on Mg(2+)-containing polyacrylamide gels. The ability to isolate L11 complexes on such gels was affected by the extent of modification by either reagent. Protein-bound and free RNAs were recovered and treated with aniline to identify their content of modified bases. Exclusion of RNA containing chemically altered bases from L11-associated material occurred for 29 modified nucleotides, located throughout the region corresponding to residues 1055-1105 in 23S rRNA. Ten bases within this region did not reproducibly inhibit binding when modified. Multiple bands of RNA were consistently observed on the nondenaturing gels, suggesting that significant intermolecular RNA-RNA interactions had occurred.
通过鉴定经焦碳酸二乙酯或肼化学修饰后干扰复合物形成的核苷酸,对来自大肠杆菌的核糖体蛋白L11与体外合成的含有其来自23S rRNA结合位点的RNA之间的相互作用进行了表征。将化学修饰的RNA与L11在适合L11特异性结合的条件下孵育,并将所得的蛋白质-RNA复合物与未结合的RNA在含Mg(2+)的聚丙烯酰胺凝胶上分离。在这种凝胶上分离L11复合物的能力受任一试剂修饰程度的影响。回收与蛋白质结合的RNA和游离RNA,并用苯胺处理以鉴定其修饰碱基的含量。在与L11相关的物质中,29个修饰核苷酸所在区域对应的整个区域(对应于23S rRNA中的1055-1105位残基)内,含有化学改变碱基的RNA被排除在外。该区域内的10个碱基经修饰后不能重复抑制结合。在非变性凝胶上始终观察到多条RNA条带,表明发生了显著的分子间RNA-RNA相互作用。