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Generating transgenic mice from bacterial artificial chromosomes: transgenesis efficiency, integration and expression outcomes

机译:从细菌人工染色体生成转基因小鼠:转基因效率,整合和表达结果

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摘要

Transgenic mice are widely used in biomedical research to study gene expression, developmental biology, and gene therapy models. Bacterial artificial chromosome (BAC) transgenes direct gene expression at physiological levels with the same developmental timing and expression patterns as endogenous genes in transgenic animal models. We generated 707 transgenic founders from 86 BAC transgenes purified by three different methods. Transgenesis efficiency was the same for all BAC DNA purification methods. Polyamine microinjection buffer was essential for successful integration of intact BAC transgenes. There was no correlation between BAC size and transgenic rate, birth rate, or transgenic efficiency. A narrow DNA concentration range generated the best transgenic efficiency. High DNA concentrations reduced birth rates while very low concentrations resulted in higher birth rates and lower transgenic efficiency. Founders with complete BAC integrations were observed in all 47 BACs for which multiple markers were tested. Additional founders with BAC fragment integrations were observed for 65% of these BACs. Expression data was available for 79 BAC transgenes and expression was observed in transgenic founders from 63 BACs (80%). Consistent and reproducible success in BAC transgenesis required the combination of careful DNA purification, the use of polyamine buffer, and sensitive genotyping assays.
机译:转基因小鼠广泛用于生物医学研究中,以研究基因表达,发育生物学和基因治疗模型。细菌人工染色体(BAC)转基因以生理水平指导基因表达,具有与转基因动物模型中的内源基因相同的发育时间和表达方式。我们通过三种不同方法纯化的86个BAC转基因产生了707个转基因创始人。所有BAC DNA纯化方法的转基因效率均相同。多胺微量注射缓冲液对于成功整合完整的BAC转基因至关重要。 BAC大小与转基因率,出生率或转基因效率之间没有相关性。狭窄的DNA浓度范围可产生最佳的转基因效率。高DNA浓度会降低出生率,而低DNA浓度会导致较高的出生率和较低的转基因效率。在所有47个BAC中都观察到了具有完全BAC集成的创始人,并对其多个标记进行了测试。在这些BAC中有65%观察到了具有BAC片段整合的其他创建者。可获取79个BAC转基因的表达数据,并在63个BAC(80%)的转基因创建者中观察到表达。要在BAC转基因中获得一致且可重现的成功,需要结合仔细的DNA纯化,多胺缓冲液的使用和灵敏的基因分型检测方法。

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