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Biomedical subjects

A Rörsch

Publications and source records attributed to A Rörsch.

At least 19 recordsLinked to original sources

An enrichment technique for auxotrophs of Agrobacterium tumefaciens using a combination of carbenicillin and lysozyme.

A procedure to enrich for auxotrophic and fermentation mutants of Agrobacterium tumefaciens is described. The method is based on the amplification of the killing power of carbenicillin by the addition of lysozyme. Isolation frequencies of some types of mutants are presented, with and without the application of the proposed procedure. The yield of mutants is usually enhanced a hundredfold per enrichment treatment.

Arginine↗

An Escherichia coli mutant with an altered elongation factor Tu.

A thermosensitive mutant of Escherichia coli has been isolated that is unable to replicate the bacteriophage MS2 at 42 degrees but permits phage production at 37 degrees . Thermal inactivation studies of the supernatant enzymes show that this mutant contains a factor essential for the polymerization of phenylalanine from phenylalanyl-tRNA that at 50 degrees is more rapidly inactivated than the corresponding wild-type factor. The elongation factor Tu (EF-Tu) was isolated and purified to apparent homogeneity as the EF-Tu.GDP complex, both from mutant and wild-type cells. Addition of purified wild-type EF-Tu.GDP to reaction mixtures fully restored the activity of thermally inactivated mutant supernatants. These experiments excluded EF-Ts as the thermolabile factor involved. Similar inactivation studies, dealing with the purified factors and performed in reaction mixtures that were not supplemented with GDP, revealed that the half-life of mutant EF-Tu.GDP at 50 degrees was 1.5 min, that of the wild-type factor 6 min. Addition of GDP (10muM) to the medium reduced the inactivation rate of both wild-type and mutant factor and also the difference in inactivation kinetics. Besides the altered elongation factor Tu, the mutant skill contains a second mutation affecting the glutaminyl-tRNA synthetase.

Bacterial Proteins↗

Comparison of the resA1 and polA1 mutations in isogenic strains of Escherichia coli K-12.

Strains carrying either the polA1 or resA1 mutation are deficient in DNA polymerase I, and the polA1 and resA1 mutations do not complement in merozygotes. The effect of these mutations in otherwise identical genetic backgrounds was studied: after ultraviolet irradiation both strains degrade their DNA more rapidly and more extensively than the wild-type strains. However, after X-ray irradiation the resA1 strain shows little DNA breakdown and repairs its single-strand breaks. In contrast, the polA1 strain degrades its DNA extensively, and single-strand breaks are not repaired. Moreover, the resA1 strain is capable of supporting the growth of a red(-) bacteriophage lambda, whereas the polA1 strain is not.

Centrifugation, Density Gradient↗