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首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Genome-wide Profiling Reveals Remarkable Parallels Between Insertion Site Selection Properties of the MLV Retrovirus and the piggyBac Transposon in Primary Human CD4(+) T Cells
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Genome-wide Profiling Reveals Remarkable Parallels Between Insertion Site Selection Properties of the MLV Retrovirus and the piggyBac Transposon in Primary Human CD4(+) T Cells

机译:全基因组分析揭示了在人类原发性CD4(+)T细胞中MLV逆转录病毒和piggyBac转座子的插入位点选择属性之间的显着平行。

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摘要

The inherent risks associated with vector insertion in gene therapy need to be carefully assessed. We analyzed the genome-wide distributions of Sleeping Beauty (SB) and piggyBac (PB) transposon insertions as well as MLV retrovirus and HIV lentivirus insertions in human CD4(+) T cells with respect to a panel of 40 chromatin states. The distribution of SB transposon insertions displayed the least deviation from random, while the PB transposon and the MLV retrovirus showed unexpected parallels across all chromatin states. Both MLV and PB insertions are enriched at transcriptional start sites (TSSs) and co-localize with BRD4-associated sites. We demonstrate physical interaction between the PB transposase and bromodomain and extraterminal domain proteins (including BRD4), suggesting convergent evolution of a tethering mechanism that directs integrating genetic elements into TSSs. We detect unequal biases across the four systems with respect to targeting genes whose deregulation has been previously linked to serious adverse events in gene therapy clinical trials. The SB transposon has the highest theoretical chance of targeting a safe harbor locus in the human genome. The data underscore the significance of vector choice to reduce the mutagenic load on cells in clinical applications.
机译:需要仔细评估与基因治疗中载体插入相关的固有风险。我们分析了人类CD4(+)T细胞中40个染色质状态组中Sleeping Beauty(SB)和piggyBac(PB)转座子插入以及MLV逆转录病毒和HIV慢病毒插入的全基因组分布。 SB转座子插入的分布显示出与随机的最小偏差,而PB转座子和MLV逆转录病毒在所有染色质状态下显示出意外的相似性。 MLV和PB插入都在转录起始位点(TSS)富集,并与BRD4相关位点共定位。我们证明了PB转座酶与溴结构域和末端外域蛋白(包括BRD4)之间的物理相互作用,表明了将整合遗传元件整合到TSS中的束缚机制的趋同进化。我们针对目标基因检测了四个系统之间的不平等偏倚,这些目标基因的失调先前与基因治疗临床试验中的严重不良事件相关。 SB转座子在人类基因组中靶向安全港基因座的理论机会最高。数据强调了在临床应用中选择载体以减少细胞诱变负荷的重要性。

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