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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Development of gene editing strategies for human beta-globin (HBB) gene mutations
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Development of gene editing strategies for human beta-globin (HBB) gene mutations

机译:人β-珠蛋白(HBB)基因突变基因编辑策略的发展

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Recent developments in gene editing technology have enabled scientists to modify DNA sequence by using engineered endonucleases. These gene editing tools are promising candidates for clinical applications, especially for treatment of inherited disorders like sickle cell disease (SCD). SCD is caused by a point mutation in human beta-globin gene (HBB). Clinical strategies have demonstrated substantial success, however there is not any permanent cure for SCD available. CRISPR/Cas9 platform uses a single endonuclease and a single guide RNA (gRNA) to induce sequence-specific DNA double strand break (DSB). When this accompanies a repair template, it allows repairing the mutated gene. In this study, it was aimed to target HBB gene via CRISPR/Cas9 genome editing tool to introduce nucleotide alterations for efficient genome editing and correction of point mutations causing SCD in human cell line, by Homology Directed Repair (HDR). We have achieved to induce target specific nucleotide changes on HBB gene in the locus of mutation causing SCD. The effect of on-target activity of bone fide standard gRNA and newly developed longer gRNA were examined. It is observed that longer gRNA has higher affinity to target DNA while having the same performance for targeting and Cas9 induced DSBs. HDR mechanism was triggered by co-delivery of donor DNA repair templates in circular plasmid form. In conclusion, we have suggested methodological pipeline for efficient targeting with higher affinity to target DNA and generating desired modifications on HBB gene.
机译:基因编辑技术的最新进程使科学家能够通过使用工程内切核酸核酸酶来修饰DNA序列。这些基因编辑工具是临床应用的候选人,特别是对于镰状细胞疾病(SCD)等遗传疾病的治疗。 SCD是由人β-珠蛋白基因(HBB)中的点突变引起的。临床策略表现出实质的成功,但对于SCD没有任何永久性治愈方法。 CRISPR / CAS9平台使用单个内切核酸酶和单个引导RNA(GRNA)来诱导序列特异性DNA双链断裂(DSB)。当这伴随着修复模板时,它允许修复突变的基因。在这项研究中,它旨在通过CRISPR / CAS9基因组编辑工具靶向HBB基因,以引入核苷酸改变,以便通过同源性定向修复(HDR)引起引起人体细胞中SCD的点突变的有效基因组编辑和校正的核苷酸改变。我们已经达到诱导突变轨迹的靶特异性核苷酸的变化导致SCD的突变轨迹。检查了骨吸率标准GRNA的靶向活性和新开发的较长GRNA的效果。观察到,较长的GRNA对靶DNA具有更高的亲和力,同时具有相同的靶向和CAS9诱导的DSB。通过在圆形质粒形式中共同递送供体DNA修复模板来引发HDR机制。总之,我们提出了有效的方法管道,用于高效靶向对靶DNA具有更高的亲和力,并在HBB基因上产生所需的修饰。

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