Comparative studies on the degradation of guanidino and ureido compounds by Pseudomonas (original) (raw)

Catabolism of l-Arginine by Pseudomonas aeruginosa

A. Mercenier

Microbiology, 1980

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Catabolism of Arginine, Citrulline and Ornithine by Pseudomonas and Related Bacteria

Corinne Vander Wauven

Microbiology-sgm, 1987

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L-Arginine Utilization by Pseudomonas Species

A. Mercenier

Microbiology, 1984

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Novel Route for Agmatine Catabolism in Aspergillus niger Involves 4-Guanidinobutyrase

Nicol Romero

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α-Hydroxyglutarate Oxidoreductase of Pseudomonas putida

Marvin Reitz

Journal of Bacteriology, 1969

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Arginine catabolism byThermanaerovibrio acidaminovorans

Caroline Plugge

FEMS Microbiology Letters, 2001

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α-Hydroxyglutarate Oxidoreductase of Pseudomonas putida

Marvin Reitz

Journal of Bacteriology, 1969

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Enzyme reactions using ureidosuccinate as a substrate during pyrimidine biosynthesis and degradation in Cl. oroticum

Penny Amy

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Aerobic Degradation of Clothianidin to 2-Chloro-methyl Thiazole and Methyl 3-(Thiazole-yl) Methyl Guanidine Produced by Pseudomonas stutzeri smk

satish parte

Journal of Environmental and Public Health

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Crystal structures of Pseudomonas aeruginosa guanidinobutyrase and guanidinopropionase, members of the ureohydrolase superfamily

Jun Young Jang

Journal of Structural Biology, 2011

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Biosynthesis and metabolism of arginine in bacteria

Andre Pierard

Microbiological Reviews, 1986

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Occurrence of succinyl derivatives in the catabolism of arginine in Pseudomonas cepacia

Corinne Wauven

Journal of bacteriology, 1985

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Aerobic biodegradation characteristics and metabolic products of quinoline by a Pseudomonas strain

Yana Yan

Bioresource Technology, 2009

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Microbial degradation of piperonylic acid

Purnendu Vasavada

Antonie van Leeuwenhoek, 1975

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Comparative survey of putrescine production from agmatine deamination in different bacteria

MARIO E ARENA

Food Microbiology, 2008

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Metabolism of chlorinated guaiacols by a guaiacol-degrading Acinetobacter junii strain

Bernardo González

Applied and Environmental Microbiology, 1993

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Metabolism of amino acid amides in Pseudomonas putida ATCC 12633

Lubbert Dijkhuizen

Applied Microbiology and Biotechnology, 1993

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Preferential Utilization of Aromatic Compounds over Glucose by Pseudomonas putida CSV86

Prashant Phale

Applied and Environmental Microbiology, 2006

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6 THE CATABOLISM OF PHENYLACETIC ACID AND OTHER RELATED MOLECULES IN PSEUDOMONAS PUTIDA U

A mi voz IRA y FUEGO

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Characterization of a Pseudomonas sp. Capable of Aniline Degradation in the Presence of Secondary Carbon Sources

Ronald Turco

Applied and Environmental Microbiology, 1989

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The role of glutamine in Pseudomonas mediterranea in biotechnological processes

Marco Nicolo'

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The degradation of p-toluenesulfonate by a species of Pseudomonas

Dennis Focht

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Effect of nitrogen source on pyrimidine catabolism by Pseudomonas fluorescens

Manuel Santiago

Microbiological Research, 1999

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Transcriptome Analysis of Agmatine and Putrescine Catabolism in Pseudomonas aeruginosa PAO1

Mohamed Hegazy

Journal of Bacteriology, 2008

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Purification and Properties of 4-Aminobutanal Dehydrogenase from a Pseudomonas Species

Denis Callewaert

Journal of Biological Chemistry

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Degradation of α-pinene oxide and [2H7]-2,5,6-trimethyl-hept-(2E)-enoic acid by Pseudomonas fluorescens NCIMB 11761

F. Neuser

Journal of Biotechnology, 2004

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Degradation and detoxification of acid orange 52 by Pseudomonas putida mt-2: a laboratory study

Ridha Mosrati, Leila Chekir-ghedira

Environmental Science and Pollution Research, 2011

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Solubilization and Partial Purification of N -Methylglutamate Dehydrogenase from Pseudomonas aminovorans

C. Bamforth

Biochemical Society Transactions, 1975

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The role of two families of bacterial enzymes in putrescine synthesis from agmatine via agmatine deiminase

MARIO E ARENA, Sergi Ferrer, Isabel Pardo

2010

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