首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >The sea urchin sns5 insulator protects retroviral vectors from chromosomal position effects by maintaining active chromatin structure.
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The sea urchin sns5 insulator protects retroviral vectors from chromosomal position effects by maintaining active chromatin structure.

机译:海胆sns5绝缘子通过保持活性染色质结构来保护逆转录病毒载体免受染色体位置的影响。

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摘要

Silencing and position-effect (PE) variegation (PEV), which is due to integration of viral vectors in heterochromatin regions, are considered significant obstacles to obtaining a consistent level of transgene expression in gene therapy. The inclusion of chromatin insulators into vectors has been proposed to counteract this position-dependent variegation of transgene expression. Here, we show that the sea urchin chromatin insulator, sns5, protects a recombinant gamma-retroviral vector from the negative influence of chromatin in erythroid milieu. This element increases the probability of vector expression at different chromosomal integration sites, which reduces both silencing and PEV. By chromatin immunoprecipitation (ChIP) analysis, we demonstrated the specific binding of GATA1 and OCT1 transcription factors and the enrichment of hyperacetylated nucleosomes to sns5 sequences. The results suggest that this new insulator is able to maintain a euchromatin state inside the provirus locus with mechanisms that are common to other characterized insulators. On the basis of its ability to function as barrier element in erythroid milieu and to bind the erythroid specific factor GATA1, the inclusion of sns5 insulator in viral vectors may be of practical benefit in gene transfer applications and, in particular, for gene therapy of erythroid disorders.
机译:沉默和位置效应(PEV)变异(PEV),这是由于病毒载体整合在异染色质区域中,被认为是在基因治疗中获得稳定水平的转基因表达的重大障碍。已经提出将染色质绝缘子包含在载体中以抵消转基因表达的这种位置依赖性变异。在这里,我们显示了海胆染色质绝缘子sns5保护重组伽玛逆转录病毒载体免受红细胞环境中染色质的负面影响。该元件增加了载体在不同染色体整合位点表达的可能性,从而降低了沉默和PEV。通过染色质免疫沉淀(ChIP)分析,我们证明了GATA1和OCT1转录因子的特异性结合以及超乙酰化核小体对sns5序列的富集。结果表明,这种新的绝缘子能够以其他特征绝缘子共有的机制在前病毒基因座内维持常染色质状态。基于其在红细胞环境中充当屏障元件并结合红细胞特异性因子GATA1的能力,在病毒载体中包含sns5绝缘子可能在基因转移应用中尤其是对红细胞的基因治疗具有实际意义。失调。

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