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Translation, stability, and resistance to decapping of mRNAs containing caps substituted in the triphosphate chain with BH3, Se, and NH

机译:在三磷酸链中被BH3,Se和NH取代的含有帽的mRNA的翻译,稳定性和抗脱盖性

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摘要

Decapping is an essential step in multiple pathways of mRNA degradation. Previously, we synthesized mRNAs containing caps that were resistant to decapping, both to dissect the various pathways for mRNA degradation and to stabilize mRNA for more sustained protein expression. mRNAs containing an α-β CH2 group are resistant to in vitro cleavage by the decapping enzyme hDcp2 but poorly translated. mRNAs containing an S substitution at the β-phosphate are well translated but only partially resistant to hDcp2. We now describe seven new cap analogs substituted at the β-phosphate with BH3 or Se, or substituted at either the α-β or β-γ O with NH. The analogs differ in affinity for eIF4E and efficiency of in vitro incorporation into mRNA by T7 RNA polymerase. Luciferase mRNAs capped with these analogs differ in resistance to hDcp2 hydrolysis in vitro, translational efficiency in rabbit reticulocyte lysate and in HeLa cells, and stability in HeLa cells. Whereas mRNAs capped with m27,2′-OGppSpG were previously found to have the most favorable properties of translational efficiency and stability in mammalian cells, mRNAs capped with m7GppBH3pm7G are translated with the same efficiency but are more stable. Interestingly, some mRNAs exhibit a lag of up to 60 min before undergoing first-order decay (t1/2 ≅ 25 min). Only mRNAs that are efficiently capped, resistant to decapping in vitro, and actively translated have long lag phases.
机译:脱盖是mRNA降解的多种途径中必不可少的步骤。以前,我们合成了含有抗脱盖帽的mRNA,以剖析mRNA降解的各种途径并稳定mRNA以实现更持久的蛋白质表达。含有α-βCH2基团的mRNA对脱盖酶hDcp2的体外切割具有抗性,但翻译较差。在β-磷酸中含有S取代的mRNAs翻译得很好,但仅部分抗hDcp2。现在我们描述七个新的帽类似物,其在β-磷酸处被BH3或Se取代,或在α-β或β-γO处被NH取代。类似物对eIF4E的亲和力和通过T7 RNA聚合酶体外掺入mRNA的效率不同。用这些类似物加帽的萤光素酶mRNA在体外对hDcp2水解的抗性,兔网织红细胞裂解液和HeLa细胞的翻译效率以及HeLa细胞的稳定性方面有所不同。先前发现以m27,2'-OGppSpG覆盖的mRNA在哺乳动物细胞中具有最有利的翻译效率和稳定性,而以m7GppBH3pm7G覆盖的mRNA具有相同的翻译效率,但更稳定。有趣的是,某些mRNA在经历一阶衰减(t1 / 2≅25分钟)之前表现出长达60分钟的延迟。只有有效加帽,体外抗脱盖和主动翻译的mRNA才有较长的滞后期。

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