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首页> 外文期刊>Science in China. Series C, Life sciences >Deoxyribozymes inhibit the expression of period1 gene in vitro
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Deoxyribozymes inhibit the expression of period1 gene in vitro

机译:脱氧核酶在体外抑制period1基因的表达

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To investigate the effect of two deoxyribozymes targeting period1 (per1) mRNA in vitro for exploring a novel gene therapy approach about circadian rhythm diseases, the specific deoxyribozymes targeting per1 were designed and synthesized chemically following MFold analysis according to its mRNA secondary structure. per1 RNA fragments were prepared by in vitro transcription of pcDNA3.1(+)-per1_(164:256). The cleavage reactions containing deoxyribozymes and per1 RNA fragments were performed under certain conditions. With the transfection technique mediated by LipofectAMINE~(TM), pcDNA3-per1 and DRz164 or DRz256 were introduced into NIH3T3 cells. The effects of deoxyribozymes on per1 were studied by reverse tran-script-polymerase chain reaction (RT-PCR) and flow cytometry (FCM). When deoxyribozymes and RNA transcripts were incubated under the adopted conditions at 37℃ for 2 h, about 63% of per1_(164:256) RNA transcripts were cleaved by DRz164 and about 50.5% by DRz256. After co-transfecting pcDNA3-per1 with DRz164 or DRz256, the expression of per1 mRNA was decreased, as indicated by RT-PCR semi-quantity analysis. FCM analysis showed that Per1 protein was inhibited. Both DRz164 and DRz256 targeting per1 have the specific cleavage activity toward per1 mRNA in vitro and can highly block the expression of per1 gene in cellular milieu.
机译:为了研究体外靶向perio1(per1)mRNA的两种脱氧核酶对探索昼夜节律疾病的新基因治疗方法的作用,根据MFold的mRNA二级结构,设计并化学合成了针对per1的特异性脱氧核酶。通过体外转录pcDNA3.1(+)-per1_(164:256)制备per1 RNA片段。包含脱氧核酶和per1 RNA片段的切割反应在一定条件下进行。利用LipofectAMINETM介导的转染技术,将pcDNA3-per1和DRz164或DRz256引入NIH3T3细胞。通过逆转录-聚合酶链反应(RT-PCR)和流式细胞仪(FCM)研究了脱氧核酶对per1的影响。将脱氧核酶和RNA转录本在所采用的条件下于37℃温育2小时后,DRz164裂解了per1_(164:256)RNA转录本,DRz256裂解了约50.5%。 RT-PCR半定量分析表明,将pcDNA3-per1与DRz164或DRz256共转染后,per1 mRNA的表达降低。 FCM分析表明Per1蛋白被抑制。靶向per1的DRz164和DRz256在体外均具有针对per1 mRNA的特异性切割活性,并且可以高度阻断per1基因在细胞环境中的表达。

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