Correspondence between radioactive and functional methods in the quality control of DNA restriction and modifying enzymes

Rev Latinoam Microbiol. 1996 Jan-Mar;38(1):31-7.

Abstract

We evaluated the use of two radiolabeled lambda DNA/Hpa II substrates to detect 5'-->3', 3'-->5' single and double stranded DNA dependent exonuclease and phosphatase activities found as contaminants in restriction and modifying enzyme preparations. Looking for the meaning of the radioactive assays results in a real cloning experience, we performed a cloning simulation assay using the same conditions established for the radioactive assay (enzyme units and pmols of DNA ends). As a result, we found that for degradation percentages of the radioactive DNA substrate per enzyme unit below 0.5, the false positives in the cloning stimulation assay were less than 5%. This conditions could ensure a good performance of the enzyme preparations for cloning experiments. Finally, we described the use of the radiolabeled [gamma 33P] ATP lambda Hpa II DNA substrate to detect 5'-->3' single stranded DNA dependent exonuclease and phosphatase contaminating activities in some critical steps of the purification process of the restriction enzyme Kpn I.

Publication types

  • Comparative Study

MeSH terms

  • Bacteriological Techniques*
  • Bacteriophage lambda / genetics
  • Cloning, Molecular*
  • DNA Modification Methylases / analysis
  • DNA Modification Methylases / metabolism
  • DNA Modification Methylases / standards*
  • DNA Restriction Enzymes / analysis
  • DNA Restriction Enzymes / metabolism
  • DNA Restriction Enzymes / standards*
  • DNA, Viral / metabolism
  • Deoxyribonuclease HpaII / metabolism
  • Drug Contamination
  • Escherichia coli / genetics
  • Exonucleases / analysis
  • Phosphoric Monoester Hydrolases / analysis
  • Radioactive Tracers*
  • Sensitivity and Specificity

Substances

  • DNA, Viral
  • Radioactive Tracers
  • DNA Modification Methylases
  • Exonucleases
  • DNA Restriction Enzymes
  • Deoxyribonuclease HpaII
  • Phosphoric Monoester Hydrolases