Department of Biomedical Science, Institute of Regenerative Medicine and Biofunction, Graduate School of Medical Science, Tottori University, Yonago, Japan.
J Hum Genet. 2011 Oct;56(10):727-33. doi: 10.1038/jhg.2011.88. Epub 2011 Aug 11.
Human artificial chromosome (HAC) has several advantages as a gene therapy vector, including stable episomal maintenance that avoids insertional mutations and the ability to carry large gene inserts. To examine the copy number effect on the gene expression levels and its stability for a long-term culture for a future application in gene therapy, we constructed a HAC vector carrying the human factor VIII (FVIII) complementary DNA, FVIII-HAC in Chinese hamster ovary (CHO) cells. One and more copies of FVIII gene on the HAC were expressed in the copy-number-dependent manner in the CHO cells. The HAC with 16 copies of FVIII, FVIII (16)-HAC, was transferred from CHO hybrids into a human immortalized mesenchymal stem cell using microcell-mediated chromosome transfer. The expression levels of HAC-derived FVIII transgene products were compared with transfected FVIII plasmids. The former showed expression levels consistent with those of the original clones, even after 50 population doublings, whereas the latter showed a remarkable decrease in expression despite unvarying DNA content, indicating that the gene on the HAC is resistant to gene silencing. These results suggest that the HAC-mediated therapeutic gene-expression system may be a powerful tool for stable expression of transgenes, and possibly for industrial production of gene products.
人类人工染色体 (HAC) 作为基因治疗载体具有几个优势,包括稳定的附加体维持,避免插入突变,以及携带大基因插入的能力。为了研究拷贝数对基因表达水平及其长期培养稳定性的影响,以便将来在基因治疗中应用,我们构建了携带人凝血因子 VIII (FVIII) cDNA 的 HAC 载体,即 FVIII-HAC,在 CHO 细胞中。在 CHO 细胞中,HAC 上的一个或多个 FVIII 基因以拷贝数依赖的方式表达。将具有 16 个拷贝 FVIII 的 HAC(FVIII(16)-HAC)通过微细胞介导的染色体转移从 CHO 杂种转移到人类永生化间充质干细胞中。将 HAC 衍生的 FVIII 转基因产物的表达水平与转染的 FVIII 质粒进行比较。前者的表达水平与原始克隆一致,即使经过 50 次群体倍增,而后者尽管 DNA 含量不变,但表达水平显著下降,表明 HAC 上的基因不易受到基因沉默的影响。这些结果表明,HAC 介导的治疗基因表达系统可能是稳定表达转基因的有力工具,也可能是基因产物的工业生产工具。