Abstract
Taylor, M. W. (Stanford University, Stanford, Calif.), and C. Yanofsky. Chromosomal relocation of prophage-associated bacterial genes. J. Bacteriol. 91:1469-1476. 1966.-Two distinguishable colony types, rough-edged and smooth-edged, were observed when tryptophan auxotrophs of Escherichia coli were transformed to tryptophan independence with DNA from the hybrid nondefective transducing phage i(lambda)h(phi80)T(1) (S)tryp A(+)B(+), and with the helper phage lambdai(434). P1kc transduction experiments with cells of the two types of colonies as genetic donors showed that the i(lambda)h(phi80)T(1) (S)tryp A(+)B(+) prophage was located at different regions of the E. coli chromosome. In cells of rough-edged colonies, the prophage was linked to the tryp-cys region, its normal location, whereas in cells of smooth-edged colonies the prophage was associated with the gal region. When transformation experiments were performed with a T(1) (R)tryp(-) deletion mutant as recipient, and phage lambdai(434) as helper, prophage localization was only detected at the gal region. Localization of (lambda)h(phi80)T(1) (S)tryp A(+)B(+) prophage near gal does not appear to be due to the formation of a recombinant phage carrying tryp A(+)B(+), but is due to some type of interaction between the genomes of i(lambda)h(phi80)T(1) (S)tryp A(+)B(+) and the helper phage. When conditions comparable to those used in transformation studies were employed in transduction experiments, including the use of helper phage, two classes of transductants with either cys or gal linkage were also observed. To examine whether the location of the prophage on the E. coli chromosome had any effect on the ability of the prophage-associated tryp A(+) and tryp B(+) genes to function or respond to different repression conditions, specific activities of the A and B subunits of tryptophan synthetase specified by the phage genome were measured. Similar values were obtained regardless of the location of the prophage-associated tryp genes. Furthermore, the prophage-associated tryp genes, free from their normal operator region, permitted enzyme formation which was unaffected by repression or derepression conditions.
MeSH Terms
Chromosome Mapping
Chromosomes
Coliphages
DNA, Viral
Enzyme Repression
Escherichia coli
Genes
Hydro-Lyases
In Vitro Techniques
Mutation
Tryptophan/metabolism
Chemicals
DNA, Viral
Tryptophan
Hydro-Lyases
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Taylor M W
Yanofsky C
References (22)
22 references, click to expand
-
The formation of superinfection-double lysogens of phage lambda in Escherichia coli K-12.
Virology. 1965 Sep;27(1):1-10
PMID: 5318339
-
HOST SPECIFICITY OF DNA PRODUCED BY ESCHERICHIA COLI. IV. HOST SPECIFICITY OF INFECTIOUS DNA FROM BACTERIOPHAGE LAMBDA.
J Mol Biol. 1965 Feb;11:238-46
PMID: 14292250
-
ON THE STRUCTURE OF THE ENDS OF LAMBADA DNA.
J Mol Biol. 1965 May;12:36-49
PMID: 14343295
-
Regulation of the enzymes of the tryptophan pathway in Escherichia coli.
Genetics. 1965 Dec;52(6):1303-16
PMID: 5327408
-
The transformation of Escherichia coli with deoxyribonucleic acid isolated from bacteriophage lambda-dg.
J Mol Biol. 1960 Dec;2:392-415
PMID: 13750787
-
Acetylornithinase of Escherichia coli: partial purification and some properties.
J Biol Chem. 1956 Jan;218(1):97-106
PMID: 13278318
-
Attachment specificity of prophage lambda-dg.
J Mol Biol. 1965 Dec;14(2):582-5
PMID: 5880866
-
A fractionating column for analysis of nucleic acids.
Anal Biochem. 1960 Jun;1:66-77
PMID: 14420563
-
Transduction and recombination study of linkage relationships among the genes controlling tryptophan synthesis in Escherichia coli.
Virology. 1959 Aug;8:425-47
PMID: 13846453
-
Host specificity of DNA produced by Escherichia coli. II. Control over acceptance of DNA from infecting phage lambda.
J Mol Biol. 1962 Jul;5:37-49
PMID: 13888713
-
Preliminary studies on the isolation and metabolism of an intermediate in aromatic biosynthesis: chorismic acid.
Biochem J. 1964 Feb;90(2):248-56
PMID: 5834234
-
The regulatory mechanism of enzyme synthesis in the tryptophan biosynthetic pathway of Escherichia coli K-12.
Biochem Biophys Res Commun. 1962 Oct 17;9:204-7
PMID: 13933809
-
ON THE TRANSCRIPTION OF THE TRYTOPHAN OPERON IN ESCHERICHIA COLI. I. THE TRYPTOPHAN OPERATOR.
J Mol Biol. 1965 Jan;11:54-63
PMID: 14255760
-
GENE TRANSFER BY BROKEN MOLECULES OF LAMBDA-DNA: ACTIVITY OF THE LEFT HALF-MOLECULE.
J Mol Biol. 1963 Sep;7:225-33
PMID: 14065306
-
Transduction of linked genetic characters of the host by bacteriophage P1.
Virology. 1955 Jul;1(2):190-206
PMID: 13267987
-
Agar layer method for production of high titer phage stocks.
Proc Soc Exp Biol Med. 1951 Nov;78(2):372-5
PMID: 14911888
-
Recombination between related temperate bacteriophages and the genetic control of immunity and prophage localization.
Virology. 1957 Dec;4(3):509-21
PMID: 13507311
-
STUDIES ON THE REGULATION OF TRYPTOPHAN BIOSYNTHESIS IN ESCHERICHIA COLI.
J Mol Biol. 1965 Apr;11:747-59
PMID: 14338784
-
Mapping of suppressor loci in Escherichia coli.
J Mol Biol. 1965 Nov;14(1):153-66
PMID: 5327649
-
Cohesion and the biological activity of bacteriophage lambda DNA.
J Mol Biol. 1965 Aug;13(1):78-91
PMID: 5859045
-
ON THE TRANSLATION OF THE A GENE REGION OF TRYPTOPHAN MESSENGER RNA.
J Mol Biol. 1964 Apr;8:616-9
PMID: 14153534
-
Cohesion occurring between DNA molecules of temperate phages phi 80 and lambda or phi 81.
Biochem Biophys Res Commun. 1965 Sep 22;20(6):727-32
PMID: 5861691