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首页> 外文期刊>Molecular biotechnology >Alternative promoters regulate cold inducible RNA-binding (CIRP) gene expression and enhance transgene expression in mammalian cells
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Alternative promoters regulate cold inducible RNA-binding (CIRP) gene expression and enhance transgene expression in mammalian cells

机译:替代启动子调节冷诱导RNA结合(CIRP)基因表达并增强哺乳动物细胞中的转基因表达

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The use of a temperature shift cultivation to enhance recombinant protein yield is widely utilised in the bioprocessing industry. The responses of mammalian cells to heat stress are well characterized; however, the equivalent cold stress responses are not. In particular, the transcriptional mechanisms that lead to enhanced gene-specific expression upon cold stress have yet to be elucidated. We report here in silico and experimental identification and characterization of transcriptional control elements that regulate cold inducible RNA-binding (CIRP) gene expression and demonstrate these can be used for enhanced transgene expression. In silico analysis identified the core CIRP promoter and a number of conserved transcription factor-binding sites across mammalian species. The core promoter was confirmed by experimental studies that located the basal transcriptional regulatory elements of CIRP within 264 nucleotides upstream of the transcription start site. Deletion analysis of a fragment from -264 to -64 that contained two putative CAAT-binding sites abolished promoter activity. A second promoter was identified in the region -452 to -264 of the transcription start site which was able to drive transcription independent of the core promoter. As the two CIRP promoters were transcriptionally active and possibly cold responsive, we used electrophoretic mobility shift assays to show that both promoter regions are able to bind factors within a nuclear extract in a dose-dependent manner and that the formation of these complexes was specific to the promoter regions. Finally, we successfully demonstrate using a reporter gene approach that enhanced transgene expression can be achieved using the identified CIRP promoter.
机译:在生物加工工业中广泛使用温移培养来提高重组蛋白的产量。哺乳动物细胞对热应激的反应已得到很好的表征。但是,等效的冷应力响应却没有。特别是,尚未阐明在冷胁迫下导致增强的基因特异性表达的转录机制。我们在这里报告计算机和转录鉴定的调控冷诱导RNA结合(CIRP)基因表达的控制元件的实验和表征,并证明这些可用于增强的转基因表达。在计算机分析中确定了跨哺乳动物物种的核心CIRP启动子和许多保守的转录因子结合位点。通过实验研究证实了核心启动子,该研究将CIRP的基础转录调控元件定位在转录起始位点上游264个核苷酸之内。从-264到-64的片段的缺失分析,其包含两个推定的CAAT结合位点消除了启动子活性。在转录起始位点的-452至-264区域中鉴定出第二启动子,其能够独立于核心启动子驱动转录。由于两个CIRP启动子具有转录活性,并且可能具有冷响应性,因此我们使用电泳迁移率变动分析法显示两个启动子区域均能够以剂量依赖性方式结合核提取物中的因子,并且这些复合物的形成对启动子区域。最后,我们成功地证明了使用报告基因方法可以使用已确定的CIRP启动子实现增强的转基因表达。

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