The expression of integrated plasmid DNA depends on copy number Journal Article


Authors: Berg, P. E.; Sheffery, M.; King, R. S.; Gong, Y.; Anderson, W. F.
Article Title: The expression of integrated plasmid DNA depends on copy number
Abstract: The effect of copy number, integration site, and enhancers on the expression of stably integrated exogenous DNA was examined in Chinese hamster cells. Three similar plasmids were constructed with the mouse βmaj-globin promoter fused to the gal K gene either with no enhancer or with the SV40 or Harvey sarcoma virus (HaSV) enhancer. Eighteen stable cell lines were obtained and characterized with respect to plasmid copy number and galactokinase activity. At copy numbers of four or less, the enhancers showed detectable activity and a DNase I hypersensitive site was present. Above four copies, gene activity decreased as the copy number increased, the enhancer sequences were apparently inactive, and the DNase I hypersensitive site disappeared. These data suggest that, at least in this model system, when exogenous DNA is integrated as multiple head-to-tail copies, the entire multigene unit expresses poorly and inappropriately. When the same exogenous DNA integrates as a single (or low number) copy, expression appears to be relatively normal as judged by enhancer stimulation and DNase I hypersensitivity. © 1987.
Keywords: nonhuman; animal cell; cytology; animals; mice; heredity; genes; gene expression; cell line; transcription, genetic; in vitro study; animalia; genetic engineering; plasmids; gene control; radioisotope; nucleic acid hybridization; azacitidine; globins; plasmid dna; enhancer region; cricetinae; cricetulus griseus; galactokinase; promoter regions (genetics); priority journal; dna restriction enzymes; chinese hamster; harvey murine sarcoma virus
Journal Title: Experimental Cell Research
Volume: 168
Issue: 2
ISSN: 0014-4827
Publisher: Elsevier Inc.  
Date Published: 1987-02-01
Start Page: 376
End Page: 388
Language: English
DOI: 10.1016/0014-4827(87)90010-3
PUBMED: 2433136
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 5 February 2021 -- Source: Scopus
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