首页> 外文期刊>Nucleic Acids Research >ISOALLOXAZINE DERIVATIVES PROMOTE PHOTOCLEAVAGE OF NATURAL RNAS AT G-CENTER-DOT-U BASE PAIRS EMBEDDED WITHIN HELICES
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ISOALLOXAZINE DERIVATIVES PROMOTE PHOTOCLEAVAGE OF NATURAL RNAS AT G-CENTER-DOT-U BASE PAIRS EMBEDDED WITHIN HELICES

机译:异戊二嗪衍生物促进了在草皮中嵌入的G-CENTER-DOT-U碱基对中天然RNA的光切割

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We have recently shown that isoalloxazine derivatives are able to photocleave RNA specifically at G.U base pairs embedded within a helical stack, The reaction involves the selective molecular recognition of G.U base pairs by the isoalloxazine ring and the removal of one nucleoside downstream of the uracil residue, Divalent metal ions are absolutely required for cleavage, Here we extend our studies to complex natural RNA molecules with known secondary and tertiary structures, such as tRNAs and a group I intron (td), G.U pairs were cleaved in accordance with the phylogenetically and experimentally derived secondary and tertiary structures, Tandem G.U pairs or certain G.U pairs located at a helix extremity were not affected, These new cleavage data, together with the RNA crystal structure, allowed us to perform molecular dynamics simulations to provide a structural basis for the observed specificity, We present a stable structural model for the ternary complex of the G.U-containing helical stack, the isoalloxazine molecule and a metal ion, This model provides significant new insight into several aspects of the cleavage phenomenon, mechanism and specificity for G.U pairs, Our study shows that in large natural RNAs a secondary structure motif made of an unusual base pair can be recognized and cleaved with high specificity by a low molecular weight molecule, This photocleavage reaction thus opens up the possibility of probing the accessibility of G.U base pairs, which are endowed with specific structural and functional roles in numerous structured and catalytic RNAs and interactions of RNA with proteins, in folded RNAs.
机译:我们最近发现,异四恶嗪衍生物能够在嵌于螺旋形堆栈中的GU碱基对上特异性裂解RNA。该反应涉及异四恶嗪环对GU碱基对的选择性分子识别,以及尿嘧啶残基下游的一个核苷的去除,裂解绝对需要二价金属离子。在这里,我们将研究扩展到具有已知二级和三级结构的复杂天然RNA分子,例如tRNA和I组内含子(td),根据系统发育和实验衍生来裂解GU对。二级和三级结构,双螺旋GU对或位于螺旋末端的某些GU对不受影响。这些新的裂解数据以及RNA晶体结构使我们能够进行分子动力学模拟,从而为观察到的特异性提供结构基础,我们提出了一种含GU螺旋三元配合物的稳定结构模型l叠层,异恶嗪分子和金属离子,该模型为GU对的裂解现象,机理和特异性的多个方面提供了重要的新见识。我们的研究表明,在大型天然RNA中,由不寻常的碱基对组成的二级结构基序可以被低分子量的分子识别并高特异性地裂解,因此这种光裂解反应为探究GU碱基对的可及性提供了可能性,GU碱基对在众多结构化和催化RNA以及它们之间的相互作用中具有特定的结构和功能作用带有蛋白质的RNA,在折叠的RNA中。

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