N2-Succinylornithine in ornithine catabolism of Pseudomonas aeruginosa |
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Authors: | Corinne Vander Wauven Alfred Jann Dieter Haas Thomas Leisinger Victor Stalon |
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Affiliation: | (1) Institut de Recherches du C.E.R.I.A., B-1070 Bruxelles, Belgium;(2) Mikrobiologisches Institut, Eidgenössische Technische Hochschule, CH-8092 Zürich, Switzerland;(3) Laboratoire de Microbiologie, Faculté des Sciences, Université Libre de Bruxelles, 1, avenue E. Gryson, B-1070 Bruxelles, Belgium;(4) Present address: Laboratoire de Chimie Bactérienne, CNRS, 31, chemin Joseph-Aiguier, F-13277 Marseille Cedex, France |
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Abstract: | Most Pseudomonas aeruginosa PAO mutants which were unable to utilize l-arginine as the sole carbon and nitrogen source (aru mutants) under aerobic conditions were also affected in l-ornithine utilization. These aru mutants were impaired in one or several enzymes involved in the conversion of N2-succinylornithine to glutamate and succinate, indicating that the latter steps of the arginine succinyltransferase pathway can be used for ornithine catabolism. Addition of aminooxyacetate, an inhibitor of the N2-succinylornithine 5-aminotransferase, to resting cells of P. aeruginosa in ornithine medium led to the accumulation of N2-succinylornithine. In crude extracts of P. aeruginosa an ornithine succinyltransferase (l-ornithine:succinyl-CoA N2-succinyltransferase) activity could be detected. An aru mutant having reduced arginine succinyltransferase activity also had correspondingly low levels of ornithine succinyltransferase. Thus, in P. aeruginosa, these two activities might be due to the same enzyme, which initiates aerobic arginine and ornithine catabolism.Abbreviations OAT ornithine 5-aminotransferase - SOAT N2-succinylornithine 5-aminotransferase - Oru ornithine utilization - Aru arginine utilization |
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Keywords: | Ornithine catabolism Pseudomonas aeruginosa Arginine catabolism |
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