A rapid single-step purification method for human interferon-gamma from isolated Escherichia coli inclusion bodies.
Joost HAELEWYN, Marc DE LEY
Abstract
Joost HAELEWYN, Marc DE LEY
Abstract
A fast purification method for recombinant human interferon-gamma, produced in E. coli, was elaborated. Human IFN-gamma accumulated in the cytoplasm of E. coli cells as inclusion bodies (IB). After lysis, the IB were isolated from the cell debris by means of a density gradient ultracentrifugation, and solubilized in 6 M guanidine hydrochloride. The subsequent refolding step was optimized for a maximal recovery of the biologically active dimer. Refolded IFN-gamma was then purified to homogeneity in a single cation exchange chromatographic step, yielding 12.5 mg protein per liter E. coli culture. The dimeric nature of the refolded protein was visualized by means of interchain cross-linking. In a subsequent Western blot the resulting derivative was recognized by a panel of five monoclonal antibodies, indicating that those epitopes on the protein surface remained unaffected upon cross-linking.
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A fast purification method for recombinant human interferon-gamma, produced in E. coli, was elaborated. Human IFN-gamma accumulated in the cytoplasm of E. coli cells as inclusion bodies (IB). After lysis, the IB were isolated from the cell debris by means of a density gradient ultracentrifugation, and solubilized in 6 M guanidine hydrochloride. The subsequent refolding step was optimized for a maximal recovery of the biologically active dimer. Refolded IFN-gamma was then purified to homogeneity in a single cation exchange chromatographic step, yielding 12.5 mg protein per liter E. coli culture. The dimeric nature of the refolded protein was visualized by means of interchain cross-linking. In a subsequent Western blot the resulting derivative was recognized by a panel of five monoclonal antibodies, indicating that those epitopes on the protein surface remained unaffected upon cross-linking.
Key concepts: Inclusion bodies, Lysis, Escherichia coli, Recombinant DNA, Guanidine, Chemistry, Ultracentrifuge, Dimer