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首页> 外文期刊>Molecular biology reports >Inhibition of no tail (ntl) gene expression in zebrafish by external guide sequence (EGS) technique.
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Inhibition of no tail (ntl) gene expression in zebrafish by external guide sequence (EGS) technique.

机译:外部引导序列(EGS)技术抑制斑马鱼中的无尾巴(ntl)基因表达。

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External guide sequence (EGS) technique, a branch of ribozyme strategy, can be enticed to cleave the target mRNA by forming a tRNA-like structure. In the present study, no tail gene (ntl), a key gene participating in the formation of normal tail, was used as a target for ribonuclease (RNase) P-mediated gene disruption in zebrafish in vivo. Transient expression of pH1-m3/4 ntl-EGS or pH1-3/4 ntl-EGS produced the full no tail phenotype at long-pec stage in proportion as 24 or 35%, respectively. As is expected that the full-length ntl mRNA of embryos at 50% epiboly stage decreased relative to control when injected the embryos with 3/4 EGS or m3/4 EGS RNA. Interestingly, ntl RNA transcripts, including the cleaved by EGS and the untouched, increased. Taken together, these results indicate that EGS strategy can work in zebrafish in vivo and becomes a potential tool for degradation of targeted mRNAs.
机译:外部引导序列(EGS)技术是核酶策略的一个分支,可通过形成类似tRNA的结构来诱使其切割靶mRNA。在本研究中,没有尾巴基因(ntl),即参与正常尾巴形成的关键基因,被用作体内斑马鱼中核糖核酸酶(RNase)P介导的基因破坏的靶标。 pH1-m3 / 4 ntl-EGS或pH1-3 / 4 ntl-EGS的瞬时表达在长pec阶段产生完全无尾表型,比例分别为24%或35%。如所预期的,当向胚胎注射3/4 EGS或m3 / 4 EGS RNA时,处于表皮期50%的胚胎的全长ntl mRNA相对于对照降低。有趣的是,包括EGS切割和未修饰的ntl RNA转录物都在增加。综上,这些结果表明,EGS策略可以在斑马鱼体内发挥作用,并成为降解目标mRNA的潜在工具。

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