Gutell R R, Woese C R
Department of Microbiology, University of Illinois, Urbana 61801.
Proc Natl Acad Sci U S A. 1990 Jan;87(2):663-7. doi: 10.1073/pnas.87.2.663.
The data base of prokaryotic small subunit ribosomal RNAs alone now numbers more than 400 sequences, while that for the large subunit rRNAs numbers more than 70 when eukaryotic, mitochondrial, and plastid sequences are also included. Comparisons among these rRNA sequences reveal a number of positions that covary in composition, suggestive of higher order structural elements; 5 such structures are reported for the small subunit rRNA and 15 for the large subunit rRNA. While some of these are properly (small) secondary structural elements, the majority would have to be classified as more complex "tertiary" interactions, which in some cases bring together diverse areas in the secondary structural diagram. A number of the covariances are not of the canonical type, indicating non-Watson-Crick interactions.
仅原核生物小亚基核糖体RNA的数据库现在就有400多个序列,而当也包括真核生物、线粒体和质体序列时,大亚基rRNA的数据库有70多个序列。这些rRNA序列之间的比较揭示了一些在组成上共同变化的位置,暗示了更高层次的结构元件;小亚基rRNA报道了5种这样的结构,大亚基rRNA报道了15种。虽然其中一些是合适的(小的)二级结构元件,但大多数必须归类为更复杂的“三级”相互作用,在某些情况下,这些相互作用将二级结构图中的不同区域聚集在一起。许多协变不是典型类型,表明存在非沃森-克里克相互作用。