4.7 Article

Growth of wildtype and mutant E. coli strains in minimal media for optimal production of nucleic acids for preparing labeled nucleotides

期刊

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
卷 88, 期 3, 页码 771-779

出版社

SPRINGER
DOI: 10.1007/s00253-010-2813-y

关键词

Escherichia coli; K12; K10zwf; DL323; BL21; Minimal media; Glycerol; Acetate. Formate

资金

  1. NanoBiotechnology Award
  2. National Institutes of Health [GM077326]
  3. NSF [CHE0746446]

向作者/读者索取更多资源

Since RNAs lie at the center of most cellular processes, there is a need for synthesizing large amounts of RNAs made from stable isotope-labeled nucleotides to advance the study of their structure and dynamics by nuclear magnetic resonance (NMR) spectroscopy. A particularly effective means of obtaining labeled nucleotides is to harvest these nucleotides from bacteria grown in defined minimal media supplemented with (NH4Cl)-N-15 and various carbon sources. Given the high cost of carbon precursors required for labeling nucleic acids for NMR studies, it becomes important to evaluate the optimal growth for commonly used strains under standard minimal media conditions. Such information is lacking. In this study, we characterize the growth for Escherichia coli strains K12, K10zwf, and DL323 in three minimal media with isotopic-labeled carbon sources of acetate, glycerol, and glycerol combined with formate. Of the three media, the LeMaster-Richards and the Studier media outperform the commonly used M9 media and both support optimal growth of E. coli for the production of nucleotides. However, the growth of all three E. coli strains in acetate is reduced almost twofold compared to growth in glycerol. Analysis of the metabolic pathway and previous gene array studies help to explain this differential growth in glycerol and acetate. These studies should benefit efforts to make selective C-13-N-15 isotopic-labeled nucleotides for synthesizing biologically important RNAs.

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