High-Level Production of Plasmid DNA by Escherichia coli DH5α ΩsacBby IntroducingincMutations

Author:

Trivedi Ram Narayan,Akhtar Parvez,Meade Jonathan,Bartlow Patrick,Ataai Mohammad M.,Khan Saleem A.,Domach Michael M.

Abstract

ABSTRACTFor small-copy-number pUC-type plasmids, theinc1andinc2mutations, which deregulate replication, were previously found to increase the plasmid copy number 6- to 7-fold. Because plasmids can exert a growth burden, it was not clear if further amplification of copy number would occur due toincmutations when the starting point for plasmid copy number was orders of magnitude higher. To investigate further the effects of theincmutations and the possible limits of plasmid synthesis, the parent plasmid pNTC8485 was used as a starting point. It lacks an antibiotic resistance gene and has a copy number of ∼1,200 per chromosome. During early stationary-phase growth in LB broth at 37°C,inc2mutants of pNTC8485 exhibited a copy number of ∼7,000 per chromosome. In minimal medium at late log growth, the copy number was found to be significantly increased, to approximately 15,000. In an attempt to further increase the plasmid titer (plasmid mass/culture volume), enzymatic hydrolysis of the selection agent, sucrose, at late log growth extended growth and tripled the total plasmid amount such that an approximately 80-fold gain in total plasmid was obtained compared to the value for typical pUC-type vectors. Finally, when grown in minimal medium, no detectable impact on the exponential growth rate or the fidelity of genomic or plasmid DNA replication was found in cells with deregulated plasmid replication. The use ofincmutations and the sucrose degradation method presents a simplified way for attaining high titers of plasmid DNA for various applications.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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