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A novel human artificial chromosome vector provides effective cell lineage-specific transgene expression in human mesenchymal stem cells.

机译:一种新型的人类人工染色体载体在人间充质干细胞中提供有效的细胞谱系特异性转基因表达。

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Mesenchymal stem cells (MSCs) hold promise for use in adult stem cell-mediated gene therapy. One of the major aims of stem cell-mediated gene therapy is to develop vectors that will allow appropriate levels of expression of therapeutic genes along differentiation under physiological regulation of the specialized cells. Human artificial chromosomes (HACs) are stably maintained as independent chromosomes in host cells and should be free from potential insertional mutagenesis problems of conventional transgenes. Therefore, HACs have been proposed as alternative implements to cell-mediated gene therapy. Previously, we constructed a novel HAC, termed 21 Deltapq HAC, with a loxP site in which circular DNA can be reproducibly inserted by the Cre/loxP system. We here assessed the feasibility of lineage-specific transgene expression by the 21Deltapq HAC vector using an in vitro differentiation system with an MSC cell line, hiMSCs, which has potential for osteogenic, chondrogenic, and adipogenic differentiation.An enhanced green fluorescent protein (EGFP) gene driven by a promoter for osteogenic lineage-specific osteopontin (OPN) gene was inserted onto the 21 Deltapq HAC and then transferred into hiMSC. The expression cassette was flanked by the chicken HS4 insulators to block promoter interference from adjacent drug-resistant genes. The EGFP gene was specifically expressed in the hiMSC that differentiated into osteocytes in coordination with the transcription of endogenous OPN gene but was not expressed after adipogenic differentiation induction or in noninduction culture. These results suggest that use of the HAC vector is suitable for regulated expression of transgenes in stem cell-mediated gene therapy.
机译:间充质干细胞(MSCs)有望用于成人干细胞介导的基因治疗。干细胞介导的基因治疗的主要目的之一是开发载体,该载体将允许在专门细胞的生理调节下沿着分化水平适当表达治疗基因。人类人工染色体(HAC)作为独立染色体稳定地维持在宿主细胞中,应该没有常规转基因的潜在插入诱变问题。因此,已经提出了HAC作为细胞介导的基因治疗的替代工具。以前,我们构建了一个新型的HAC,称为21 Deltapq HAC,它具有一个loxP位点,可以通过Cre / loxP系统可复制地插入环状DNA。我们在这里评估了21Deltapq HAC载体使用具有MSC细胞系hiMSCs的体外分化系统进行谱系特异性转基因表达的可行性,该系统具有成骨,软骨形成和成脂分化的潜能。增强的绿色荧光蛋白(EGFP)将由成骨谱系特异性骨桥蛋白(OPN)基因的启动子驱动的基因插入21 Deltapq HAC,然后转移到hiMSC中。表达盒的两侧是鸡HS4绝缘子,以阻止启动子受到相邻耐药基因的干扰。 EGFP基因在hiMSC中特异性表达,其与内源性OPN基因的转录协同分化为骨细胞,但在脂肪诱导分化或非诱导培养后不表达。这些结果表明,使用HAC载体适合在干细胞介导的基因治疗中调节转基因的表达。

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