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Production of pharmaceutical proteins includes insulin, one of the most widely produced recombinant pharmaceutical proteins. One common production method uses genetically engineered E. coli to express human proinsulin.
Insulin production begins by inoculating starter flasks with E. coli seed culture. After incubation, the culture is scaled up into a large fed-batch bioreactor.
During the growth phase, proinsulin production remains repressed. Once the cells reach an optimal density, a chemical inducer is added to initiate proinsulin production.
This proinsulin accumulates in cells as inclusion bodies.
The cells are harvested and lysed to release the inclusion bodies, which are then solubilized to release unfolded proinsulin into solution.
Exposed cysteine residues in the proinsulin are temporarily blocked using sodium sulfite and tetrathionate to prevent incorrect disulfide bond formation.
Following removal of these reagents, the proinsulin is refolded under controlled conditions that favor correct disulfide bonding and restore native structure.
Finally, the proinsulin is enzymatically cleaved to yield mature insulin.
Industrial insulin production uses genetically engineered E. coli expressing a proinsulin gene controlled by a tryptophan promoter and containing a me…
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