Butcher S E, Allain F H, Feigon J
Department of Chemistry and Biochemistry and Molecular Biology Institute, University of California, Los Angeles 90095-1569, USA.
Nat Struct Biol. 1999 Mar;6(3):212-6. doi: 10.1038/6651.
The hairpin ribozyme is a small catalytic RNA with a unique two-domain structure. Here we present the solution structure of the loop B domain of the hairpin ribozyme, which contains most of the catalytically essential nucleotides. The 38-nucleotide domain contains a 16-nucleotide internal loop that forms one of the largest non-Watson-Crick segments of base pairing thus far determined by either NMR or crystallography. Since the solution structure of the smaller loop A domain has been previously solved, an NMR structure-based model of the 22,000 Mr hairpin ribozyme-substrate open complex emerges by joining the two domain structures. Strikingly, catalytically essential functional groups for the loop B domain are concentrated within an expanded minor groove, presenting a clear docking surface for the loop A domain.
发夹状核酶是一种具有独特双结构域结构的小型催化RNA。在此,我们展示了发夹状核酶环B结构域的溶液结构,该结构域包含了大部分催化必需的核苷酸。这个38个核苷酸的结构域含有一个16个核苷酸的内环,它形成了迄今为止通过核磁共振(NMR)或晶体学确定的最大的非沃森-克里克碱基配对片段之一。由于较小的环A结构域的溶液结构此前已得到解析,通过将这两个结构域结构连接起来,一个基于NMR结构的22000道尔顿发夹状核酶-底物开放复合物模型得以呈现。引人注目的是,环B结构域的催化必需功能基团集中在一个扩展的小沟内,为环A结构域提供了一个清晰的对接表面。