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LCR/MEL: a versatile system for high-level expression of heterologous proteins in erythroid cells.

机译:LCR / MEL:一种用于在类红细胞中高水平表达异源蛋白的多功能系统。

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摘要

We have used the human globin locus control region (LCR) to assemble an expression system capable of high-level, integration position-independent expression of heterologous genes and cDNAs in murine erythroleukaemia (MEL) cells. The cDNAs are inserted between the human beta-globin promoter and the second intron of the human beta-globin gene, and this expression cassette is then placed downstream of the LCR and transfected into MEL cells. The cDNAs are expressed at levels similar to those of the murine beta-globin in the induced MEL cells. Heterologous genomic sequences can also be expressed at similar levels when linked to to the LCR and beta-globin promoter. In addition we demonstrate that, after induction of differentiation, MEL cells are capable of secreting heterologous proteins over a prolonged time period, making this system suitable for use in continuous production systems such as hollow fibre bioreactors. The utility of the LCR/MEL cell system is demonstrated by the expression of growth hormone at high levels (greater than 100 mg/l) 7 days after induction. Since the expression levels seen do not depend upon gene amplification and are independent of the integration position of the expression cassette, it is possible to obtain clones with stable high-level expression within 3-4 weeks after transfection.
机译:我们已经使用人类球蛋白基因座控制区(LCR)组装表达系统,能够在鼠类红细胞白血病(MEL)细胞中高水平,整合位置无关的异源基因和cDNA表达。将cDNA插入人β-珠蛋白启动子和人β-珠蛋白基因的第二内含子之间,然后将该表达盒置于LCR的下游并转染到MEL细胞中。 cDNA的表达水平与诱导的MEL细胞中的鼠β-珠蛋白相似。当与LCR和β-珠蛋白启动子连接时,异源基因组序列也可以相似的水平表达。另外,我们证明,诱导分化后,MEL细胞能够在较长的时间内分泌异源蛋白,从而使该系统适用于连续生产系统,如中空纤维生物反应器。 LCR / MEL细胞系统的实用性通过诱导后7天高水平(大于100 mg / l)的生长激素表达来证明。由于所见的表达水平不取决于基因扩增,并且不依赖于表达盒的整合位置,因此有可能在转染后3-4周内获得具有稳定高水平表达的克隆。

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