Studnicka G M, Eiserling F A, Lake J A
Nucleic Acids Res. 1981 Apr 24;9(8):1885-904. doi: 10.1093/nar/9.8.1885.
A general secondary structure is proposed for the 5S RNA of prokaryotic ribosomes, based on helical energy filtering calculations. We have considered all secondary structures that are common to 17 different prokaryotic 5S RNAs and for each 5S sequence calculated the (global) minimum energy secondary structure (300,000 common structures are possible for each sequence). The 17 different minimum energy secondary structures all correspond, with minor differences, to a single, secondary structure model. This is strong evidence that this general 5S folding pattern corresponds to the secondary structure of the functional 5S rRNA. The general 5S secondary structure is forked and in analogy with the cloverleaf of tRNA is named the "wishbone" model. It constant 8 double helical regions; one in the stem, four in the first, or constant arm, and three in the second arm. Four of these double helical regions are present in a model earlier proposed (1) and four additional regions not proposed by them are presented here. In the minimum energy general structure, the four helices in the constant arm are exactly 15 nucleotide pairs long. These helices are stacked in the sequences from gram-positive bacteria and probably stacked in gram-negative sequences as well. In sequences from gram-positive bacteria the length of the constant arm is maintained at 15 stacked pairs by an unusual minimum energy interaction involving a C26-G57 base pair intercalated between two adjacent helical regions.
基于螺旋能量过滤计算,提出了原核核糖体5S RNA的一般二级结构。我们考虑了17种不同原核生物5S RNA共有的所有二级结构,并针对每个5S序列计算了(全局)最小能量二级结构(每个序列可能有300,000种共有结构)。这17种不同的最小能量二级结构虽有细微差异,但都对应于单一的二级结构模型。这有力地证明了这种一般的5S折叠模式对应于功能性5S rRNA的二级结构。一般的5S二级结构呈叉状,类似于tRNA的三叶草结构,被命名为“叉骨”模型。它包含8个双螺旋区域;一个在茎部,四个在第一个或恒定臂中,三个在第二个臂中。其中四个双螺旋区域存在于先前提出的一个模型中,此处还展示了另外四个他们未提出的区域。在最小能量的一般结构中,恒定臂中的四个螺旋恰好有15个核苷酸对长。这些螺旋在革兰氏阳性菌的序列中是堆叠的,在革兰氏阴性菌的序列中可能也是堆叠的。在革兰氏阳性菌的序列中,恒定臂的长度通过一种不寻常的最小能量相互作用维持在15个堆叠对,这种相互作用涉及插入两个相邻螺旋区域之间的C26 - G57碱基对。