[Restriction mapping of recombinant plasmids carrying the genes for arginine biosynthesis in Escherichia coli K-12]. 1986

A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett

ArgA and argECBH genes of Escherichia coli K-12 were cloned on the pBR322 vector. Restriction maps of the recombinant plasmids were constructed. Deletion mutants of these recombinant plasmids, retaining the functional argA and argE genes, were obtained using different restriction enzymes. All of the recombinant derivatives have the replication properties of the pBR322 vector.

UI MeSH Term Description Entries
D010957 Plasmids Extrachromosomal, usually CIRCULAR DNA molecules that are self-replicating and transferable from one organism to another. They are found in a variety of bacterial, archaeal, fungal, algal, and plant species. They are used in GENETIC ENGINEERING as CLONING VECTORS. Episomes,Episome,Plasmid
D011995 Recombination, Genetic Production of new arrangements of DNA by various mechanisms such as assortment and segregation, CROSSING OVER; GENE CONVERSION; GENETIC TRANSFORMATION; GENETIC CONJUGATION; GENETIC TRANSDUCTION; or mixed infection of viruses. Genetic Recombination,Recombination,Genetic Recombinations,Recombinations,Recombinations, Genetic
D002874 Chromosome Mapping Any method used for determining the location of and relative distances between genes on a chromosome. Gene Mapping,Linkage Mapping,Genome Mapping,Chromosome Mappings,Gene Mappings,Genome Mappings,Linkage Mappings,Mapping, Chromosome,Mapping, Gene,Mapping, Genome,Mapping, Linkage,Mappings, Chromosome,Mappings, Gene,Mappings, Genome,Mappings, Linkage
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
D004926 Escherichia coli A species of gram-negative, facultatively anaerobic, rod-shaped bacteria (GRAM-NEGATIVE FACULTATIVELY ANAEROBIC RODS) commonly found in the lower part of the intestine of warm-blooded animals. It is usually nonpathogenic, but some strains are known to produce DIARRHEA and pyogenic infections. Pathogenic strains (virotypes) are classified by their specific pathogenic mechanisms such as toxins (ENTEROTOXIGENIC ESCHERICHIA COLI), etc. Alkalescens-Dispar Group,Bacillus coli,Bacterium coli,Bacterium coli commune,Diffusely Adherent Escherichia coli,E coli,EAggEC,Enteroaggregative Escherichia coli,Enterococcus coli,Diffusely Adherent E. coli,Enteroaggregative E. coli,Enteroinvasive E. coli,Enteroinvasive Escherichia coli
D005798 Genes, Bacterial The functional hereditary units of BACTERIA. Bacterial Gene,Bacterial Genes,Gene, Bacterial
D001120 Arginine An essential amino acid that is physiologically active in the L-form. Arginine Hydrochloride,Arginine, L-Isomer,DL-Arginine Acetate, Monohydrate,L-Arginine,Arginine, L Isomer,DL Arginine Acetate, Monohydrate,Hydrochloride, Arginine,L Arginine,L-Isomer Arginine,Monohydrate DL-Arginine Acetate

Related Publications

A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
January 1982, Gene,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
September 1980, Journal of bacteriology,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
August 1980, Gene,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
December 1994, Gene,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
March 1983, Gene,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
January 1982, Molecular & general genetics : MGG,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
January 1979, Doklady Akademii nauk SSSR,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
December 1980, Gene,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
December 1978, Journal of bacteriology,
A A Nersisian, and I L Mett, and Z R Badalian, and A V Kochikian, and A L Mett
February 1979, Molecular & general genetics : MGG,
Copied contents to your clipboard!