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首页> 外文期刊>Bioconjugate Chemistry >Artificial Control of Gene Silencing Activity Based on siRNA Conjugation with Polymeric Molecule Having Coil-Globule Transition Behavior
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Artificial Control of Gene Silencing Activity Based on siRNA Conjugation with Polymeric Molecule Having Coil-Globule Transition Behavior

机译:基于siRNA与具有线圈-小球过渡行为的高分子共轭的基因沉默活性的人工控制

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摘要

A new strategy for controlling gene silencing activity of siRNA in the cell was developed in the present study. siRNA was linearly conjugated with PNIPAAm, where coil-globule transition of the conjugated PNIPAAm allows thermoresponsive exposure of the vicinal siRNA molecule; a coil form of PNIPAAm (T < LCST) inhibits siRNA interaction with gene silencing-related proteins due to the steric hindrance effect, while a globule form of PNIPAAm (T > LCST) allows a ready access of siRNA to gene silencing pathway. As a result, at T > LCST, PNIPAAm-siRNA elicited effective association of siRNA with a gene silencing-related protein of Ago2, while siRNA recruitment into the gene silencing pathway was significantly suppressed at T < LCST. Ultimately, gene silencing efficacy of PNIPAAm-siRNA was close to unconjugated siRNA at T > LCST (similar to 80%), while it was dramatically decreased to similar to 20% at T < LCST, suggesting that coil-globule transition of the conjugated polymer can control the bioactivity of the vicinal siRNA molecule.
机译:本研究中开发了一种新的策略来控制细胞中siRNA的基因沉默活性。 siRNA与PNIPAAm线性缀合,其中缀合的PNIPAAm的螺旋状小球过渡使附近的siRNA分子具有热响应性。螺旋形式的PNIPAAm(T LCST)使siRNA易于进入基因沉默途径。结果,在T> LCST时,PNIPAAm-siRNA引起siRNA与基因沉默相关蛋白Ago2的有效结合,而在T LCST时接近未结合的siRNA(大约80%),而在T

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