Connaughton J F, Rairkar A, Lockard R E, Kumar A
Nucleic Acids Res. 1984 Jun 11;12(11):4731-45. doi: 10.1093/nar/12.11.4731.
The primary structure of rabbit 18S ribosomal RNA was determined by nucleotide sequence analysis of the RNA directly. The rabbit rRNA was specifically cleaved with T1 ribonuclease, as well as with E. coli RNase H using a Pst 1 DNA linker to generate a specific set of overlapping fragments spanning the entire length of the molecule. Both intact and fragmented 18S rRNA were end-labeled with [32P], base-specifically cleaved enzymatically and chemically and nucleotide sequences determined from long polyacrylamide sequencing gels run in formamide. This approach permitted the detection of both cistron heterogeneities and modified bases. Specific nucleotide sequences within E. coli 16S rRNA previously implicated in polyribosome function, tRNA binding, and subunit association are also conserved within the rabbit 18S rRNA. This conservation suggests the likelihood that these regions have similar functions within the eukaryotic 40S subunit.
通过直接对兔18S核糖体RNA进行核苷酸序列分析,确定了其一级结构。兔rRNA用T1核糖核酸酶以及使用Pst 1 DNA接头的大肠杆菌RNase H进行特异性切割,以产生一组跨越整个分子长度的特定重叠片段。完整的和片段化的18S rRNA均用[32P]进行末端标记,通过酶促和化学方法进行碱基特异性切割,并从在甲酰胺中运行的长聚丙烯酰胺测序凝胶中确定核苷酸序列。这种方法能够检测顺反子异质性和修饰碱基。先前认为与多核糖体功能、tRNA结合和亚基缔合有关的大肠杆菌16S rRNA内的特定核苷酸序列在兔18S rRNA中也保守。这种保守性表明这些区域在真核40S亚基内具有相似功能的可能性。