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RNAs synthesized using photocleavable biotinylated nucleotides have dramatically improved catalytic efficiency

机译:使用可光裂解的生物素化核苷酸合成的RNA大大提高了催化效率

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Obtaining homogeneous population of natively folded RNAs is a crippling problem encountered when preparing RNAs for structural or enzymatic studies. Most of the traditional methods that are employed to prepare large quantities of RNAs involve procedures that partially denature the RNA. Here, we present a simple strategy using 'click' chemistry to couple biotin to a 'caged' photocleavable (PC) guanosine monophosphate (GMP) in high yield. This biotin-PC GMP, accepted by T7 RNA polymerase, has been used to transcribe RNAs ranging in size from 27 to 527 nt. Furthermore we show, using an in-gel fluorescence assay, that natively prepared 160 and 175 kDa minimal group II intron ribozymes have enhanced catalytic activity over the same RNAs, purified via denaturing conditions and refolded. We conclude that large complex RNAs prepared by non-denaturing means form a homogeneous population and are catalytically more active than those prepared by denaturing methods and subsequent refolding; this facile approach for native RNA preparation should benefit synthesis of RNAs for biophysical and therapeutic applications.
机译:当制备用于结构或酶研究的RNA时,获得天然折叠RNA的同质种群是一个严重的问题。用于制备大量RNA的大多数传统方法都涉及部分变性RNA的程序。在这里,我们提出了一种简单的策略,即使用“点击”化学方法以高产率将生物素与“笼状”光可裂解(PC)鸟苷单磷酸酯(GMP)偶联。这种生物素-PC GMP,已被T7 RNA聚合酶所接受,已被用于转录大小为27到527 nt的RNA。此外,我们显示,使用凝胶内荧光测定法,天然制备的160和175 kDa最小II组内含子核酶对相同的RNA具有增强的催化活性,可通过变性条件纯化并重新折叠。我们得出的结论是,通过非变性方法制备的大型复杂RNA形成同质群体,并且比通过变性方法和随后的重折叠制备的RNA具有催化活性。这种简便的天然RNA制备方法应有益于RNA的合成,以用于生物物理和治疗应用。

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