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Towards a safer, more randomized lentiviral vector integration profile exploring artificial LEDGF chimeras

机译:探索更安全,更随机的慢病毒载体整合谱,探索人工LEDGF嵌合体

摘要

The capacity to integrate transgenes into the host cell genome makes retroviral vectors an interesting tool for gene therapy. Although stable insertion resulted in successful correction of several monogenic disorders, it also accounts for insertional mutagenesis, a major setback in otherwise successful clinical gene therapy trials due to leukemia development in a subset of treated patients. Despite improvements in vector design, their use is still not risk-free. Lentiviral vector (LV) integration is directed into active transcription units by LEDGF/p75, a host-cell protein co-opted by the viral integrase. We engineered LEDGF/p75-based hybrid tethers in an effort to elicit a more random integration pattern to increase biosafety, and potentially reduce proto-oncogene activation. We therefore truncated LEDGF/p75 by deleting the N-terminal chromatin-reading PWWP-domain, and replaced this domain with alternative pan-chromatin binding peptides. Expression of these LEDGF-hybrids in LEDGF-depleted cells efficiently rescued LV transduction and resulted in LV integrations that distributed more randomly throughout the host-cell genome. In addition, when considering safe harbor criteria, LV integration sites for these LEDGF-hybrids distributed more safely compared to LEDGF/p75-mediated integration in wild-type cells. This approach should be broadly applicable to introduce therapeutic or suicide genes for cell therapy, such as patient-specific iPS cells.
机译:将转基因整合到宿主细胞基因组中的能力使逆转录病毒载体成为用于基因治疗的有趣工具。尽管稳定的插入导致成功纠正了几种单基因疾病,但它也解释了插入诱变,这是由于一部分受治疗患者的白血病发展而在其他成功的临床基因治疗试验中遇到的重大挫折。尽管矢量设计有所改进,但它们的使用仍然不是没有风险的。慢病毒载体(LV)整合通过LEDGF / p75(由病毒整合酶共同选择的宿主细胞蛋白)导入主动转录单位。我们设计了基于LEDGF / p75的杂合系链,以寻求一种更加随机的整合方式,以提高生物安全性并潜在地降低原癌基因的激活。因此,我们通过删除读取N端染色质的PWWP结构域来截断LEDGF / p75,并用其他泛染色质结合肽替换了该结构域。这些LEDGF杂交体在LEDGF耗尽的细胞中的表达有效挽救了LV转导,并导致LV整合更加随机地分布在整个宿主细胞基因组中。此外,在考虑安全港标准时,与LEDGF / p75介导的野生型细胞整合相比,这些LEDGF杂交体的LV整合位点分布更安全。该方法应广泛适用于引入治疗或自杀基因进行细胞治疗,例如患者特异性iPS细胞。

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