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      glnA mutations conferring resistance to methylammonium in Escherichia coli K12.

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          Abstract

          Cells of Escherichia coli K12 were sensitive to 100 mM-methylammonium when cultured under nitrogen limitation, and resistant when grown with an excess of either NH4Cl or glutamine. Glutamine synthetase activity was required for expression of the methylammonium-sensitive phenotype. Mutants were isolated which were resistant to 100 mM-methylammonium, even when grown under nitrogen limitation. P1 bacteriophage transduction and F' complementation analysis revealed that the resistance-conferring mutations mapped either inside the glnA structural gene and/or elsewhere in the E. coli chromosome. Glutamine synthetase was purified from the wild-type and from some of the mutant strains. Strains carrying glnA-linked mutations that were solely responsible for the methylammonium-resistant phenotype yielded an altered enzyme, which was less active biosynthetically with either ammonium or methylammonium as substrate. Sensitivity to methylammonium appeared to be due to synthesis of gamma-glutamylmethylamide by glutamine synthetase, which was synthesized poorly, if at all, by mutants carrying an altered glutamine synthetase enzyme.

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          Author and article information

          Journal
          J Gen Microbiol
          Journal of general microbiology
          Microbiology Society
          0022-1287
          0022-1287
          Jun 1987
          : 133
          : 6
          Affiliations
          [1 ] Centro de Investigación sobre Ingeniería Genética y Biotecnología, Universidad Nacional Autónoma de México, DF.
          Article
          10.1099/00221287-133-6-1631
          2889793
          9c8d6917-bc2d-4345-92a8-e3820abf7df8
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