Process for plasmid DNA fermentation
Improvements in plasmid DNA production technology are needed to insure the economic feasibility of future DNA vaccines and DNA therapeutics. General methods are described, by means of which it is possible to dramatically increase plasmid DNA productivity in a fermentor. These processes feature Fed-batch fermentation strategies, combined with novel growth and induction phase temperature shifts.
1. A method for fed-batch fermentation production of covalently closed super-coiled plasmid DNA comprising the steps of: A) growing bacterial cells containing a plasmid, cosmid, or bacterial artificial chromosome replicon at a reduced temperature during a fed-batch phase; and B) restricting growth rate of the bacterial cells during the fed-batch phase by nutrient limitation; and C) inducing plasmid production by increasing temperature; and D) continuing growth at elevated temperature to accumulate plasmid product; whereby said method increases plasmid yield above yields that are achieved when growing the bacterial cells without the reduced temperature during the fed-batch phase, the reduced temperature during the fed-batch phase being approximately 30° C.
2. The method of claim 1 wherein the reduced temperature during the fed-batch phase is that determined to maintain the plasmid yield below approximately 2 mg/L/OD 600 .
3. The method of claim 1 wherein the plasmid contains a ColE 1 replication origin.
4. The method of claim 1 wherein the plasmid contains a pMB 1 replication origin containing a pUC G to A mutation.
5. The method of claim 1 wherein the plasmid is a VR1012 plasmid.
6. The method of claim 1 wherein the growing bacterial cells are grown in a fermentation media which is semi-defined glycerol media.
7. A method for fermentation production of covalently closed super-coiled plasmid DNA comprising the steps of: A) growing bacterial cells containing a pBR322 plasmid, cosmid, or bacterial artificial chromosome replicon in fed-batch fermentation media, the fermentation media being a semi-defined glycerol media; and B) restricting growth rate during fed-batch phase by nutrient limitation; and C) continuing growth to accumulate plasmid product.