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    ER-Alpha-cDNA As Part of a Bicistronic Transcript Gives Rise to High Frequency, Long Term, Receptor Expressing Cell Clones

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    Within the large group of Estrogen Receptor alpha (ERĪ±)-negative breast cancer patients, there is a subgroup carrying the phenotype ERĪ±āˆ’, PRāˆ’, and Her2āˆ’, named accordingly ā€œTriple-Negativeā€ (TN). Using cell lines derived from this TN group, we wished to establish cell clones, in which ERĪ± is ectopically expressed, forming part of a synthetic lethality screening system. Initially, we generated cell transfectants expressing a mono-cistronic ERĪ± transcription unit, adjacent to a separate dominant selectable marker transcription unit. However, the yield of ERĪ± expressing colonies was rather low (5ā€“12.5%), and only about half of these displayed stable ectopic ERĪ± expression over time. Generation and maintenance of such cell clones under minimal exposure to the ERĪ± ligand, did not improve yield or expression stability. Indeed, other groups have also reported grave difficulties in obtaining ectopic expression of ERĪ± in ERĪ±-deficient breast carcinoma cells. We therefore switched to transfecting these cell lines with pERĪ±-IRES, a plasmid vector encoding a bicistronic translation mRNA template: ERĪ± Open Reading Frame (ORF) being upstream followed by a dominant-positive selectable marker (hygroR) ORF, directed for translation from an Internal Ribosome Entry Site (IRES). Through usage of this bicistronic vector linkage system, it was possible to generate a very high yield of ERĪ± expressing cell clones (50ā€“100%). The stability over time of these clones was also somewhat improved, though variations between individual cell clones were evident. Our successful experience with ERĪ± in this system may serve as a paradigm for other genes where ectopic expression meets similar hardships
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