Separation of DNA restriction fragments by ion-pair chromatography. 1986

S Eriksson, and G Glad, and P A Pernemalm, and E Westman

The separation of restriction endonuclease fragments of DNA on columns of Pharmacia PepRPC (C2/C18) has been studied. The effect of different concentrations of triethylammonium or tetrabutylammonium salts as ion-pairing reagents, as well as of physical parameters, such as flow-rate and sample load, has been investigated. With the use of triethylammonium buffers, removed by evaporation under vacuum, separated fragments were recovered in yields of 68%. Isolated fragments were accessible to further cleavage with restriction enzymes. Resolution of fragments ranging from 10 to 3000 base pairs depended primarily upon molecular size.

UI MeSH Term Description Entries
D008970 Molecular Weight The sum of the weight of all the atoms in a molecule. Molecular Weights,Weight, Molecular,Weights, Molecular
D002851 Chromatography, High Pressure Liquid Liquid chromatographic techniques which feature high inlet pressures, high sensitivity, and high speed. Chromatography, High Performance Liquid,Chromatography, High Speed Liquid,Chromatography, Liquid, High Pressure,HPLC,High Performance Liquid Chromatography,High-Performance Liquid Chromatography,UPLC,Ultra Performance Liquid Chromatography,Chromatography, High-Performance Liquid,High-Performance Liquid Chromatographies,Liquid Chromatography, High-Performance
D002852 Chromatography, Ion Exchange Separation technique in which the stationary phase consists of ion exchange resins. The resins contain loosely held small ions that easily exchange places with other small ions of like charge present in solutions washed over the resins. Chromatography, Ion-Exchange,Ion-Exchange Chromatography,Chromatographies, Ion Exchange,Chromatographies, Ion-Exchange,Ion Exchange Chromatographies,Ion Exchange Chromatography,Ion-Exchange Chromatographies
D004262 DNA Restriction Enzymes Enzymes that are part of the restriction-modification systems. They catalyze the endonucleolytic cleavage of DNA sequences which lack the species-specific methylation pattern in the host cell's DNA. Cleavage yields random or specific double-stranded fragments with terminal 5'-phosphates. The function of restriction enzymes is to destroy any foreign DNA that invades the host cell. Most have been studied in bacterial systems, but a few have been found in eukaryotic organisms. They are also used as tools for the systematic dissection and mapping of chromosomes, in the determination of base sequences of DNAs, and have made it possible to splice and recombine genes from one organism into the genome of another. EC 3.21.1. Restriction Endonucleases,DNA Restriction Enzyme,Restriction Endonuclease,Endonuclease, Restriction,Endonucleases, Restriction,Enzymes, DNA Restriction,Restriction Enzyme, DNA,Restriction Enzymes, DNA
D006868 Hydrolysis The process of cleaving a chemical compound by the addition of a molecule of water.
D013050 Spectrometry, Fluorescence Measurement of the intensity and quality of fluorescence. Fluorescence Spectrophotometry,Fluorescence Spectroscopy,Spectrofluorometry,Fluorescence Spectrometry,Spectrophotometry, Fluorescence,Spectroscopy, Fluorescence

Related Publications

S Eriksson, and G Glad, and P A Pernemalm, and E Westman
August 1983, Journal of chromatography,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
September 1989, Journal of chromatography,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
October 1987, Analytical biochemistry,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
January 1981, Journal of chromatography,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
July 1987, Journal of chromatography,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
January 1984, Journal of biochemistry,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
January 1978, Nucleic acids research,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
September 1996, Analytical chemistry,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
September 1979, Journal of chromatographic science,
S Eriksson, and G Glad, and P A Pernemalm, and E Westman
February 1988, Biochemical and biophysical research communications,
Copied contents to your clipboard!