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Expression and in vitro cleavage activity of anti-caspase-7 hammerhead ribozymes

机译:caspase-7锤头状核酶的表达及体外裂解活性

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AIM: To prepare hammerhead ribozymes against mouse caspase-7 and identify their cleavage activity in vitro, in order to select a ribozyme with specific cleavage activity against mouse caspase-7 as a potential gene therapy for apoptosis-related diseases. METHODS: Anti-caspase-7 ribozymes targeting sites 333 and 394 (named Rz333 and Rz394) were designed by computer software, and their DNA sequences encoding ribozymes were synthesized. Caspase-7 DNA sequence was acquired by RT-PCR. Ribozymes and caspase-7 DNA obtained by in vitro transcription were cloned into pBSKneo U6' and pGEM-T vectors, respectively. The cleavage activity of ribozymes against mouse caspase-7 was identified by cleavage experiments in vitro. RESULTS: Rz333 and Rz394 were designed and their DNA sequences were synthesized respectively. The expression vector of caspase-7 and plasmids containing Rz333 and Rz394 were reconstructed successfully. Ribozymes and caspase-7 mRNA were expressed by in vitro transcription. In vitro cleavage experiment showed that 243-nt and 744-nt segments were produced after caspase-7 mRNA was mixed with Rz333 in equivalent, and the cleavage efficiency was 67.98%. No cleaved segment was observed when caspase-7 mRNA was mixed with Rz394. CONCLUSION: Rz333 can site-specific cleave mouse caspase-7 mRNA, and it shows a potential for gene therapy of apoptosis-related diseases by down-regulating gene expression of caspase-7.
机译:目的:制备针对小鼠caspase-7的锤头状核酶,并在体外鉴定其裂解活性,以选择对小鼠caspase-7具有特异性裂解活性的核酶作为凋亡相关疾病的潜在基因疗法。方法:通过计算机软件设计靶向caspase-7的核酶,分别靶向333和394位点(分别为Rz333和Rz394),并合成其编码核酶的DNA序列。通过RT-PCR获得Caspase-7 DNA序列。通过体外转录获得的核酶和caspase-7 DNA分别克隆到pBSKneo U6'和pGEM-T载体中。通过体外裂解实验鉴定了核酶对小鼠胱天蛋白酶7的裂解活性。结果:设计了Rz333和Rz394,分别合成了其DNA序列。成功构建了caspase-7表达载体和含有Rz333和Rz394的质粒。通过体外转录表达核酶和caspase-7 mRNA。体外裂解实验表明,将caspase-7 mRNA与Rz333等价混合后产生243-nt和744-nt片段,裂解效率为67.98%。当caspase-7 mRNA与Rz394混合时,未观察到切割的片段。结论:Rz333可以特异性地切割小鼠caspase-7 mRNA,通过下调caspase-7的基因表达,为凋亡相关疾病的基因治疗提供了可能。

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