A rapid alkaline extraction procedure for screening recombinant plasmid DNA
Быстрая процедура щелочной экстракции для скрининга рекомбинантной плазмидной ДНК
1979-11-24
SCID: 54.1/wtt36nx3
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alkaline plasmid DNA extractiongel electrophoresis screeningrecombinant plasmid DNArestriction enzyme digestionselective alkaline denaturation
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Abstract (AI)
A procedure for extracting plasmid DNA from bacterial cells is described. The method is simple enough to permit the analysis by gel electrophoresis of 100 or more clones per day yet yields plasmid DNA which is pure enough to be digestible by restriction enzymes. The principle of the method is selective alkaline denaturation of high molecular weight chromosomal DNA while covalently closed circular DNA remains double-stranded. Adequate pH control is accomplished without using a pH meter. Upon neutralization, chromosomal DNA renatures to form an insoluble clot, leaving plasmid DNA in the supernatant. Large and small plasmid DNAs have been extracted by this method.
Key Findings
1
After neutralization, chromosomal DNA renatures into an insoluble clot, leaving plasmid DNA in the supernatant.
2
Extracted plasmid DNA is sufficiently pure for digestion by restriction enzymes.
3
Selective alkaline denaturation separates high-molecular-weight chromosomal DNA from covalently closed circular plasmid DNA.
4
The method successfully extracts both large and small plasmid DNAs without requiring a pH meter.
5
The procedure enables gel-electrophoresis screening of 100 or more bacterial clones per day.
Research Object
Plasmid DNA from bacterial cells, including large and small plasmids
Research Subject
Rapid alkaline extraction and selective separation of plasmid DNA from high-molecular-weight chromosomal DNA for screening recombinant clones
Publication Details
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1979-11-24
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