Evaluation of RNA-knockdown strategies for modulation of cytochrome P450 reductase activity in mouse hepatocytes.

Neil Cw Mackenzie, Simon G Lillico, Ken Brown, Charles R Wolf, Christopher Ba Whitelaw
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Abstract

Transgenic technologies can provide important animal models for studying drug-metabolizing enzymes. Our overall aim was to generate versatile cell and animal systems that exhibited varying levels of cytochrome P450 oxidoreductase (POR) activity, more accurately modelling the human population for pharmacological and toxicology studies. Towards this goal we evaluated RNA-interference constructs designed for use in vitro and in vivo for reducing POR activity in hepatocytes. This study clearly demonstrates that both POR protein level and reductase activity can be significantly knocked down in Hepa-1 cells in vitro, while highlighting the difficulty in predicting knockdown efficiency in transgenic animals. The high levels of embryonic lethality observed, and inability to produce multi-copy transgenic animals indicates that high levels of shRNA expression may be detrimental to embryonic development.

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rna敲低策略对小鼠肝细胞细胞色素P450还原酶活性调节的评价。
转基因技术可以为研究药物代谢酶提供重要的动物模型。我们的总体目标是产生具有不同水平细胞色素P450氧化还原酶(POR)活性的多功能细胞和动物系统,更准确地为药理学和毒理学研究建立人群模型。为了实现这一目标,我们评估了设计用于体外和体内降低肝细胞POR活性的rna干扰结构。本研究清楚地表明,在体外Hepa-1细胞中,POR蛋白水平和还原酶活性都可以被显著下调,同时也强调了在转基因动物中预测下调效率的难度。观察到的高胚胎致死率和无法产生多拷贝转基因动物表明,shRNA的高水平表达可能对胚胎发育有害。
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