首页> 外文期刊>Nucleic Acids Research >Investigation of the recognition of an important uridine in an internal loop of a hairpin ribozyme prepared using post-synthetically modified oligonucleotides.
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Investigation of the recognition of an important uridine in an internal loop of a hairpin ribozyme prepared using post-synthetically modified oligonucleotides.

机译:研究使用合成后修饰的寡核苷酸制备的发夹状核酶内部环中重要尿苷的识别。

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摘要

We introduced 4-thio- ((4S)U), 2-thio- ((2S)U), 4- O -methyluridine ((4Me)U) and cytidine substitutions for U+2, which is an important base for cleavage in a substrate RNA. Oligonucleotides containing 4-thio- and 4- O -methyluridine were prepared by a new convenient post-synthetic modification method using a 4- O - p -nitrophenyl-uridine derivative. A hairpin ribozyme cleaved the substrate RNA with either C+2, (4S)U+2 or (4Me)U+2 at approximately 14-, 6- and 4-fold lower rates, respectively, than that of the natural substrate. In contrast, the substrate with a (2S)U+2 was cleaved with the same activity as the natural substrate. These results suggest that the O4 of U+2 is involved in hydrogen bonding at loop A, but the O2 of U+2 is not recognized by the active residues. Circular dichroism data of the ribozymes containing (4S)U+2 and (2S)U+2, as well as the susceptibility of the thiocarbonyl group to hydrogen peroxide, suggest that a conformational change of U+2 occurs during the domain docking in the cleavage reaction. We propose here the conformational change of U+2 from the ground state to the active molecule during the reaction.
机译:我们介绍了U + 2的4-硫代((4S)U),2-硫代((2S)U),4- O-甲基尿苷((4Me)U)和胞苷取代基,这是裂解的重要基础在底物RNA中。通过使用4-O-对-硝基苯基-尿苷衍生物的新型方便的合成后修饰方法,制备了包含4-硫代-和4-O-甲基尿苷的寡核苷酸。发夹状核酶用C + 2,(4S)U + 2或(4Me)U + 2切割底物RNA的速率分别比天然底物低约14倍,6倍和4倍。相反,具有(2S)U + 2的底物以与天然底物相同的活性被裂解。这些结果表明U + 2的O4参与环A处的氢键结合,但是U + 2的O2未被活性残基识别。包含(4S)U + 2和(2S)U + 2的核酶的圆二色性数据以及硫代羰基对过氧化氢的敏感性表明,U + 2的构象变化发生在结构域对接中裂解反应。我们在这里提出反应过程中U + 2从基态到活性分子的构象变化。

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