Göringer H U, Wagner R, Jacob W F, Dahlberg A E, Zwieb C
Nucleic Acids Res. 1984 Sep 25;12(18):6935-50. doi: 10.1093/nar/12.18.6935.
The ribosomal 5S RNA gene from the rrnB operon of E. coli was mutagenised in vitro using a synthetic oligonucleotide hybridised to M13 ssDNA containing that gene. The oligonucleotide corresponded to the 5S RNA sequence positions 34 to 51 and changed the guanosine at position 41 to a cytidine. The DNA containing the desired mutation was identified by dot blot hybridisation and introduced back into the plasmid pKK 3535 which contains the total rrnB operon in pBR 322. Plasmid coded 5S rRNA was selectively labeled with 32p using a modified maxi-cell system, and the replacement of guanosine G41 by cytidine was confirmed by RNA sequencing. The growth of cells containing mutant 5S rRNA was not altered by the base change, and the 5S rRNA was processed and incorporated into 50S ribosomal subunits and 70S ribosomes. The structure of wildtype and mutant 5S rRNA was compared by chemical modification of accessible guanosines with kethoxal and limited enzymatic digestion using RNase T1 and nuclease S1. These results showed that the wildtype and mutant 5S rRNA do not differ significantly in their structure. Furthermore, the formation, interconversion and stability of the two 5S rRNA A- and B-conformers are unchanged.
利用与含有大肠杆菌rrnB操纵子的核糖体5S RNA基因的M13单链DNA杂交的合成寡核苷酸,在体外对该基因进行诱变。该寡核苷酸对应于5S RNA序列的第34至51位,并将第41位的鸟苷改变为胞苷。通过斑点印迹杂交鉴定含有所需突变的DNA,并将其重新导入质粒pKK 3535,该质粒在pBR 322中包含完整的rrnB操纵子。使用改良的大细胞系统用32P对质粒编码的5S rRNA进行选择性标记,并通过RNA测序证实胞苷取代了鸟苷G41。碱基变化并未改变含有突变型5S rRNA的细胞的生长,并且5S rRNA被加工并整合到50S核糖体亚基和70S核糖体中。通过用乙二醛对可及鸟苷进行化学修饰以及使用RNase T1和核酸酶S1进行有限的酶切消化,比较了野生型和突变型5S rRNA的结构。这些结果表明,野生型和突变型5S rRNA在结构上没有显著差异。此外,两种5S rRNA A-和B-构象异构体的形成、相互转化和稳定性没有改变。