Hoffmann Bernd, Mitchell G Thomas, Gendron Patrick, Major Francois, Andersen Angela A, Collins Richard A, Legault Pascale
Department of Biochemistry and Molecular Biology, University of Georgia, Athens, GA 30602, USA.
Proc Natl Acad Sci U S A. 2003 Jun 10;100(12):7003-8. doi: 10.1073/pnas.0832440100. Epub 2003 Jun 2.
Substrate cleavage by the Neurospora Varkud satellite (VS) ribozyme involves a structural change in the stem-loop I substrate from an inactive to an active conformation. We have determined the NMR solution structure of a mutant stem-loop I that mimics the active conformation of the cleavage site internal loop. This structure shares many similarities, but also significant differences, with the previously determined structures of the inactive internal loop. The active internal loop displays different base-pairing interactions and forms a novel RNA fold composed exclusively of sheared G-A base pairs. From chemical-shift mapping we identified two Mg2+ binding sites in the active internal loop. One of the Mg2+ binding sites forms in the active but not the inactive conformation of the internal loop and is likely important for catalysis. Using the structure comparison program mc-search, we identified the active internal loop fold in other RNA structures. In Thermus thermophilus 16S rRNA, this RNA fold is directly involved in a long-range tertiary interaction. An analogous tertiary interaction may form between the active internal loop of the substrate and the catalytic domain of the VS ribozyme. The combination of NMR and bioinformatic approaches presented here has identified a novel RNA fold and provides insights into the structural basis of catalytic function in the Neurospora VS ribozyme.
粗糙脉孢菌瓦尔库德卫星(VS)核酶对底物的切割涉及茎环I底物从无活性构象到活性构象的结构变化。我们已经确定了一种模拟切割位点内部环活性构象的突变茎环I的核磁共振溶液结构。该结构与先前确定的无活性内部环结构有许多相似之处,但也有显著差异。活性内部环表现出不同的碱基配对相互作用,并形成了一种仅由剪切的G-A碱基对组成的新型RNA折叠结构。通过化学位移图谱分析,我们在活性内部环中确定了两个Mg2+结合位点。其中一个Mg2+结合位点在内部环的活性构象而非无活性构象中形成,可能对催化作用很重要。使用结构比较程序mc-search,我们在其他RNA结构中确定了活性内部环折叠结构。在嗜热栖热菌16S rRNA中,这种RNA折叠结构直接参与了一种长程三级相互作用。底物的活性内部环与VS核酶的催化结构域之间可能形成类似的三级相互作用。本文介绍的核磁共振和生物信息学方法相结合,确定了一种新型RNA折叠结构,并为粗糙脉孢菌VS核酶催化功能的结构基础提供了见解。