Nehdi Atef, Perreault Jonathan, Beaudoin Jean-Denis, Perreault Jean-Pierre
RNA Group/Groupe ARN, Département de Biochimie, Faculté de médecine et des sciences de la santé, Université de Sherbrooke, Sherbrooke, Québec, J1H 5N4, Canada.
Nucleic Acids Res. 2007;35(20):6820-31. doi: 10.1093/nar/gkm674. Epub 2007 Oct 11.
A bioinformatic covariation analysis of a collection of 119 novel variants of the antigenomic, self-cleaving hepatitis delta virus (HDV) RNA motif supported the formation of all of the Watson-Crick base pairs (bp) of the catalytic centre except the C19-G81 pair located at the bottom of the P2 stem. In fact, a novel Watson-Crick bp between C19 and G80 is suggested by the data. Both chemical and enzymatic probing demonstrated that initially the C19-G81 pair is formed in the ribozyme (Rz), but upon substrate (S) binding and the formation of the P1.1 pseudoknot C19 switches its base-pairing partner from G81 to G80. As a result of this finding, the secondary structure of this ribozyme has been redrawn. The formation of the C19-G80 bp results in a J4/2 junction composed of four nucleotides, similar to that seen in the genomic counterpart, thereby increasing the similarities between these two catalytic RNAs. Additional mutagenesis, cleavage activity and probing experiments yield an original characterization of the structural features involving the residues of the J4/2 junction.
对119个反基因组自切割丁型肝炎病毒(HDV)RNA基序新变体的集合进行的生物信息协变分析支持了催化中心所有沃森-克里克碱基对(bp)的形成,但位于P2茎底部的C19-G81对除外。事实上,数据表明C19和G80之间存在一个新的沃森-克里克碱基对。化学和酶促探测均表明,最初C19-G81对在核酶(Rz)中形成,但在底物(S)结合以及P1.1假结形成后,C19将其碱基配对伙伴从G81切换为G80。基于这一发现,重新绘制了该核酶的二级结构。C19-G80碱基对的形成导致了一个由四个核苷酸组成的J4/2连接,类似于在基因组对应物中看到的连接,从而增加了这两种催化RNA之间的相似性。额外的诱变、切割活性和探测实验对涉及J4/2连接残基的结构特征进行了原始表征。