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首页> 外文期刊>Marine biotechnology >The cytomegalovirus promoter-driven short hairpin RNA constructs mediate effective RNA interference in zebrafish in vivo
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The cytomegalovirus promoter-driven short hairpin RNA constructs mediate effective RNA interference in zebrafish in vivo

机译:巨细胞病毒启动子驱动的短发夹RNA构建体在体内介导斑马鱼体内的有效RNA干扰

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摘要

The ability to utilize the RNA interference (RNAi) machinery for silencing target-gene expression has created a lot of excitement in the research community. In the present study, we used a cytomegalovirus (CMV) promoter-driven DNA template approach to induce short hairpin RNA (shRNA) triggered RNAi to block exogenous Enhanced Green Fluorescent Protein (EGFP) and endogenous No Tail (NTL) gene expressions. We constructed three plasmids, pCMV-EGFP-CMV-shGFP-SV40, pCMV-EGFP-CMV-shNTL-SV40, and pCMV-EGFP-CMV-shScrambled-SV40, each containing a CMV promoter driving an EGFP reporter cDNA and DNA coding for one shRNA under the control of another CMV promoter. The three shRNA-generating plasmids and pCMV-EGFP control plasmid were introduced into zebrafish embryos by microinjection. Samples were collected at 48 h after injection. Results were evaluated by phenotype observation and real-time fluorescent quantitative reverse-transcription polymerase chain reaction (Q-PCR). The shGFP-generating plasmid significantly inhibited the EGFP expression viewed under fluorescent microscope and reduced by 70.05 +/- 1.26% of exogenous EGFP gene mRNA levels compared with controls by Q-PCR. The shRNA targeting endogenous NTL gene resulted in obvious NTL phenotype of 30 +/- 4% and decreased the level of their corresponding mRNAs up to 54.52 +/- 2.05% compared with nontargeting control shRNA. These data proved the feasibility of the CMV promoter-driven shRNA expression technique to be used to inhibit exogenous and endogenous gene expressions in zebrafish in vivo.
机译:利用RNA干扰(RNAi)机制沉默靶基因表达的能力在研究界引起了极大的兴趣。在本研究中,我们使用了巨细胞病毒(CMV)启动子驱动的DNA模板方法来诱导短发夹RNA(shRNA)触发的RNAi来阻断外源增强型绿色荧光蛋白(EGFP)和内源性无尾巴(NTL)基因表达。我们构建了三个质粒pCMV-EGFP-CMV-shGFP-SV40,pCMV-EGFP-CMV-shNTL-SV40和pCMV-EGFP-CMV-shScrambled-SV40,每个质粒均包含驱动EGFP报告基因cDNA的CMV启动子和编码一个shRNA在另一个CMV启动子的控制下。通过显微注射将三种产生shRNA的质粒和pCMV-EGFP对照质粒引入斑马鱼胚胎。注射后48小时收集样品。通过表型观察和实时荧光定量逆转录聚合酶链反应(Q-PCR)评估结果。与通过Q-PCR的对照相比,生成shGFP的质粒显着抑制了在荧光显微镜下观察到的EGFP表达,并使外源EGFP基因mRNA水平降低了70.05 +/- 1.26%。与非靶向对照shRNA相比,靶向内源性NTL基因的shRNA导致明显的NTL表型为30 +/- 4%,并将其相应mRNA的水平降低至54.52 +/- 2.05%。这些数据证明了CMV启动子驱动的shRNA表达技术在体内抑制斑马鱼体内外源和内源基因表达的可行性。

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