Strains of
A general method and strains of bacteria are described, by means of which it is possible to dramatically purify plasmid DNA with respect to genomic DNA, and RNA. In one preferred embodiment, lysis and nuclease removal of host nucleic acids is an integral component of the fermentation/harvest process, and as such, achieves increased yield and purity with simplified downstream purification and reduced waste streams, thus reducing production costs.
1. A bacteria comprising:
A) a chimeric nuclease comprising phage T5 D15 exonuclease and RNaseA; and
B) a plasmid.
2. A method of making covalently closed super-coiled plasmid DNA comprising the steps of:
A) introducing a nucleic acid sequence encoding a chimeric nuclease comprising phage T5 D15 exonuclease and RNaseA into E. coli;
B) transfecting the E. coli with plasmid DNA;
C) growing the transfected E. coli;
D) expressing the chimeric nuclease in the periplasmic space of the E. coli such that genomic E. coli DNA is digested while the plasmid DNA is not digested; and
E) purifying the covalently closed super-coiled plasmid DNA.