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An S/MAR-based infectious episomal genomic DNA expression vector provides long-term regulated functional complementation of LDLR deficiency

机译:基于S / MAR的传染性游离基因组DNA表达载体可提供LDLR缺陷的长期调节功能互补

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摘要

Episomal gene expression vectors offer a safe and attractive alternative to integrating vectors. Here we describe the development of a high capacity episomal vector system exploiting human episomal retention sequences to provide efficient vector maintenance and regulated gene expression through the delivery of a genomic DNA locus. The iBAC-S/MAR vector is capable of the infectious delivery and retention of large genomic DNA transgenes by exploiting the high transgene capacity of herpes simplex virus type 1 (HSV-1) and the episomal retention properties of the scaffold/matrix attachment region (S/MAR). The iBAC-S/MAR vector was used to deliver and maintain a 135 kb genomic DNA insert carrying the human low density lipoprotein receptor (LDLR) genomic DNA locus at high efficiency in CHO ldlr(-/-) a7 cells. Long-term studies on CHO ldlr(-/-) a7 clonal cell lines carrying iBACS/MAR-LDLR demonstrated low copy episomal stability of the vector for > 100 cell generations without selection. Expression studies demonstrated that iBAC-S/MAR-LDLR completely restored LDLR function in CHO ldlr(-/-) a7 cells to physiological levels and that this expression can be repressed by similar to 70% by high sterol levels, recapitulating the same feedback regulation seen at the endogenous LDLR locus. This vector overcomes the major problems of vector integration and unregulated transgene expression.
机译:游离基因表达载体为整合载体提供了一种安全且有吸引力的替代方法。在这里,我们描述了开发高效率附加型载体系统的过程,该系统利用了人类附加型保留序列,通过传递基因组DNA基因座来提供有效的载体维护和调控的基因表达。 iBAC-S / MAR载体能够通过利用1型单纯疱疹病毒(HSV-1)的高转基因能力以及支架/基质附着区的附加型保留特性来传染和传递大基因组DNA转基因。 S / MAR)。 iBAC-S / MAR载体用于在CHO Idlr(-/-)a7细胞中高效传递和维持一个135 kb的基因组DNA插入片段,该片段带有人低密度脂蛋白受体(LDLR)基因组DNA座位。对携带iBACS / MAR-LDLR的CHO ldlr(-/-)a7克隆细胞系的长期研究表明,该载体在不进行选择的情况下,对于> 100个细胞世代而言,其低拷贝的游离型稳定性。表达研究表明,iBAC-S / MAR-LDLR将CHO ldlr(-/-)a7细胞中的LDLR功能完全恢复到生理水平,高固醇水平可将该表达抑制约70%,概括了相同的反馈调节在内源性LDLR基因座处观察到。该载体克服了载体整合和转基因表达不受调控的主要问题。

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