Abstract
The deoxyribonucleic acid (DNA) extraction procedure of Piechowska and Fox was evaluated to determine which steps are required for the isolation of high-molecular-weight single-stranded material from transformed cultures of Bacillus subtilis. The results indicate that high-molecular-weight single-stranded DNA can be isolated when certain basic proteins are present at the time of lysis. In the absence of such protective agents as lysozyme or cytC the single-stranded DNA is degraded. The single-stranded DNA can also be protected by being treated with lysozyme at low temperature. The high molecular weight of this single-stranded material and its kinetics of appearance are consistent with its being an intermediate in the transformation process.
MeSH Terms
Bacillus subtilis/analysis
Carbon Radioisotopes
Centrifugation, Density Gradient
DNA, Bacterial/analysis,isolation & purification
DNA, Single-Stranded/analysis,isolation & purification
Molecular Weight
Muramidase
Nucleic Acid Denaturation
Temperature
Thymidine
Transformation, Genetic
Tritium
Chemicals
Carbon Radioisotopes
DNA, Bacterial
DNA, Single-Stranded
Tritium
Muramidase
Thymidine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Davidoff-Abelson R
Dubnau D
References (21)
21 references, click to expand
-
REQUIREMENTS FOR TRANSFORMATION IN BACILLUS SUBTILIS.
J Bacteriol. 1961 May;81(5):741-6
PMID: 16561900
-
Integration of deoxyribonuclease-treated DNA in bacillus subtilis transformation.
J Gen Physiol. 1966 Jul;49(6):233-58
PMID: 4961186
-
Kinetic analysis of the products of donor deoxyribonucleate in transformed cells of Bacillus subtilis.
J Bacteriol. 1973 Oct;116(1):154-62
PMID: 4200840
-
Sedimentation rate as a measure of molecular weight of DNA.
Biophys J. 1963 Jul;3:309-21
PMID: 14016998
-
Molecular weights of coliphages and coliphage DNA. I. Measurement of the molecular weight of bacteriophage T7 by high-speed equilibrium centrifugation.
J Mol Biol. 1970 Dec 28;54(3):537-46
PMID: 4923668
-
Acid depurination of DNA-polycation complexes.
Biochim Biophys Acta. 1969 Feb 18;174(2):749-51
PMID: 5813319
-
SEDIMENTATION STUDIES OF THE SIZE AND SHAPE OF DNA.
J Mol Biol. 1965 Feb;11:373-90
PMID: 14290352
-
The integration of donor and recipient deoxyribonucleic acid during transformation of Bacillus subtilis.
Biochem J. 1969 Jun;113(1):167-74
PMID: 4979894
-
BINDING OF BASIC PROTEINS TO DNA.
J Mol Biol. 1965 Jan;11:128-36
PMID: 14255753
-
Molecular fate of DNA in genetic transformation of Pneumococcus.
J Mol Biol. 1962 Jul;5:119-31
PMID: 14461406
-
BIOCHEMICAL AND GENETIC STUDIES OF INTEGRATION AND RECOMBINATION IN BACILLUS SUBTILIS TRANSFORMATION.
Genetics. 1964 Oct;50:717-38
PMID: 14221877
-
Interaction of clupeine and DNA.
Biochim Biophys Acta. 1966 Dec 21;129(3):649-51
PMID: 5965743
-
Binding of rabbit gamma globulin by competent Bacillus subtilis cultures.
J Bacteriol. 1969 Jul;99(1):125-31
PMID: 4184694
-
Fate of transforming deoxyribonucleic acid after uptake by competent Bacillus subtilis: size and distribution of the integrated donor segments.
J Bacteriol. 1972 Aug;111(2):488-94
PMID: 4626501
-
Fate of transforming DNA following uptake by competent Bacillus subtilis. I. Formation and properties of the donor-recipient complex.
J Mol Biol. 1971 Mar 14;56(2):209-21
PMID: 4994568
-
EQUILIBRIUM SEDIMENTATION OF MACROMOLECULES IN DENSITY GRADIENTS.
Proc Natl Acad Sci U S A. 1957 Jul 15;43(7):581-8
PMID: 16590059
-
Fate of transforming deoxyribonucleate in Bacillus subtilis.
J Bacteriol. 1971 Nov;108(2):680-9
PMID: 5001868
-
Interactions between DNA and hen's egg white lysozyme. Effects of composition and structural changes of DNA, ionic strength and temperature.
Biochim Biophys Acta. 1968 Jun 18;161(1):56-67
PMID: 5661383
-
ON THE MECHANISM OF GENETIC RECOMBINATION IN TRANSFORMING BACILLUS SUBTILIS.
J Mol Biol. 1964 Jul;9:236-45
PMID: 14200386
-
Behavioural differences between native DNA and denatured DNA.
Experientia. 1966 Sep 15;22(9):599-601
PMID: 5970605
-
FATE OF TRANSFORMING DEOXYRIBONUCLEIC ACID IN BACILLUS SUBTILIS.
J Bacteriol. 1965 May;89:1250-5
PMID: 14292994