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An important base triple anchors the substrate helix recognition surface within the Tetrahymena ribozyme active site

机译:一个重要的基础三元组将底物螺旋识别表面锚定在四膜虫核酶活性位点内

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摘要

Key to understanding the structural biology of catalytic RNA is determining the underlying networks of interactions that stabilize RNA folding, substrate binding, and catalysis. Here we demonstrate the existence and functional importance of a Hoogsteen base triple (U300⋅A97-U277), which anchors the substrate helix recognition surface within the Tetrahymena group I ribozyme active site. Nucleotide analog interference suppression analysis of the interacting functional groups shows that the U300⋅A97-U277 triple forms part of a network of hydrogen bonds that connect the P3 helix, the J8/7 strand, and the P1 substrate helix. Product binding and substrate cleavage kinetics experiments performed on mutant ribozymes that lack this base triple (C A-U, U G-C) or replace it with the isomorphous C+⋅G-C triple show that the A97 Hoogsteen triple contributes to the stabilization of both substrate helix docking and the conformation of the ribozyme’s active site. The U300⋅A97-U277 base triple is not formed in the recently reported crystallographic model of a portion of the group I intron, despite the presence of J8/7 and P3 in the RNA construct [Golden, B. L., Gooding, A. R., Podell, E. R. & Cech, T. R. (1998) Science 282, 259–264]. This, along with other biochemical evidence, suggests that the active site in the crystallized form of the ribozyme is not fully preorganized and that substantial rearrangement may be required for substrate helix docking and catalysis.
机译:理解催化RNA的结构生物学的关键是确定相互作用的基础网络,以稳定RNA折叠,底物结合和催化。在这里,我们证明了Hoogsteen碱基三元组(U300⋅A97-U277)的存在和功能重要性,该碱基将底物螺旋识别表面锚定在四膜虫群I核酶活性位点内。相互作用官能团的核苷酸类似物干扰抑制分析表明,U300⋅A97-U277三元组形成了氢键网络的一部分,该氢键网络连接P3螺旋,J8 / 7链和P1底物螺旋。对缺少该碱基三联体(C AU,UGC)或被同构C + ⋅GC三联体取代的突变核酶进行的产物结合和底物裂解动力学实验表明,A97 Hoogsteen三联体有助于底物螺旋对接的稳定和核酶活性位点的构象。尽管在RNA构建物中存在J8 / 7和P3,但最近报道的I组内含子一部分的结晶模型中并未形成U300⋅A97-U277碱基三元组[Golden,BL,Gooding,AR,Podell, ER&Cech,TR(1998)Science 282,259–264]。这以及其他生化证据表明,核酶结晶形式的活性位没有完全预组织,底物螺旋对接和催化可能需要进行实质性重排。

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