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Translation inhibition reveals interaction of 2′-deoxy and 2′-O-methyl molecular beacons with mRNA targets in living cells

机译:翻译抑制揭示了2'-脱氧和2'-O-甲基分子信标与活细胞中mRNA靶标的相互作用

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摘要

Understanding the interaction between oligonucleotide probes and RNA targets in living cells is important for biological and clinical studies of gene expression in vivo. Here, we demonstrate that starvation of cells and translation inhibition by blocking the mTOR or PI-3 kinase pathway could significantly reduce the fluorescence signal from 2′-deoxy molecular beacons (MBs) targeting K-ras and GAPDH mRNAs in living cells. However, the intensity and localization of fluorescence signal from MBs targeting nontranslated 28S rRNA remained the same in normal and translation-inhibited cells. We also found that, in targeting K-ras and GAPDH mRNAs, the signal level from MBs with 2′-O-methyl backbone did not change when translation was repressed. Taken together, our findings suggest that MBs with DNA backbone hybridize preferentially with mRNAs in their translational state in living cells, whereas those with 2′-O-methyl chemistry tend to hybridize to mRNA targets in both translational and nontranslational states. This work may thus provide a significant insight into probe design for detection of RNA molecules in living cells and RNA biology.
机译:了解活细胞中寡核苷酸探针与RNA靶标之间的相互作用对于体内基因表达的生物学和临床研究很重要。在这里,我们证明细胞的饥饿和通过抑制mTOR或PI-3激酶途径的翻译抑制作用可以显着降低来自活细胞中靶向K-ras和GAPDH mRNA的2'-脱氧分子信标(MBs)的荧光信号。但是,来自靶向非翻译的28S rRNA的MB的荧光信号的强度和定位在正常细胞和翻译抑制细胞中保持相同。我们还发现,在靶向K-ras和GAPDH mRNA时,翻译受到抑制时,带有2'-O-甲基主链的MB的信号水平没有改变。两者合计,我们的发现表明,具有DNA骨架的MBs优先与其在活细胞中处于翻译状态的mRNA杂交,而具有2'-O-甲基化学的MB则倾向于与处于翻译和非翻译状态的mRNA杂交。因此,这项工作可以为检测活细胞中的RNA分子和RNA生物学的探针设计提供重要的见识。

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