Hampe A, Eladari M E, Galibert F
Biochimie. 1976;58(8):943-51. doi: 10.1016/s0300-9084(76)80282-9.
The primary structure of 5.8S mouse ribosomal RNA has been studied and compared to the structures previously established for other animal species. The results obtained show that mouse 5.8S ribosomal RNA yields pancreatic oligonucleotides with the same nucleotide sequence as the homologous oligonucleotides from rat cells. Furthermore T1 oligonucleotides of 5.8S ribosomal RNA from rat, mouse and human cells behave identically on fingerprinting fractionation and have the same composition as judged by pancreatic digestion. These results strongly suggest that the primary structures of 5.8S ribosomal RNA from rat, mouse and human cells are identical. This identity of structure is also found when the presence of several modified bases (psi and methylated bases) is considered. The findings emphasize the remarkable evolutionary stability of ribosomal gene structure. Comparison of the terminal regional of 5.8S RNA with those of 18S RNA reveals differences which imply a more complex mechanism underlying the maturation of 45S precursor RNA than the finding of identical structure would have suggested.
对小鼠5.8S核糖体RNA的一级结构进行了研究,并与先前为其他动物物种确定的结构进行了比较。所得结果表明,小鼠5.8S核糖体RNA产生的胰腺寡核苷酸与大鼠细胞中同源寡核苷酸具有相同的核苷酸序列。此外,大鼠、小鼠和人类细胞的5.8S核糖体RNA的T1寡核苷酸在指纹图谱分级分离中表现相同,并且经胰腺消化判断具有相同的组成。这些结果有力地表明,大鼠、小鼠和人类细胞的5.8S核糖体RNA的一级结构是相同的。当考虑几种修饰碱基(假尿苷和甲基化碱基)的存在时,也发现了这种结构的一致性。这些发现强调了核糖体基因结构显著的进化稳定性。将5.8S RNA的末端区域与18S RNA的末端区域进行比较,发现存在差异,这意味着45S前体RNA成熟的机制比相同结构的发现所暗示的更为复杂。