Abstract
Biochemical over-expression of the human estrogen receptor was achieved using a Saccharomyces cerevisiae expression system. The receptor was produced as a novel ubiquitin fusion protein. This fusion protein is short lived in the cell and is processed to produced infused receptor shortly after folding. Conventional high copy expression plasmids produced receptor to about 0.04% of the total soluble protein. By incorporating a defective leu2 allele into these vectors, an additional 5-fold increase in receptor production was obtained. The recombinant receptor was undegraded, soluble and biologically active. Conventional methods of disrupting cells using glass beads had a detrimental effect on the ability of the receptor to bind hormone. Enzymatic digestion of the cell wall followed by hypotonic shock liberates the receptor that quantitatively binds estrogen. © 1991.
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CITATION STYLE
McDonnell, D. P., Nawaz, Z., Densmore, C., Weigel, N. L., Pham, T. A., Clark, J. H., & O’Malley, B. W. (1991). High level expression of biologically active estrogen receptor in Saccharomyces cerevisiae. Journal of Steroid Biochemistry and Molecular Biology, 39(3), 291–297. https://doi.org/10.1016/0960-0760(91)90038-7
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