2008
DOI: 10.1074/jbc.m800487200
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New Insights into the Alternative d-Glucarate Degradation Pathway

Abstract: Although the D-glucarate degradation pathway is well characterized in Escherichia coli, genetic and biochemical information concerning the alternative pathway proposed in Pseudomonas species and Bacillus subtilis remains incomplete. Acinetobacter baylyi ADP1 is a Gram-negative soil bacterium possessing the alternative pathway and able to grow using D-glucarate as the only carbon source. Based on the annotation of its sequenced genome (1), we have constructed a complete collection of singlegene deletion mutants… Show more

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Cited by 29 publications
(42 citation statements)
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References 30 publications
(28 reference statements)
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“…1B. Together with other reports (12,25,59,(62)(63)(64), this report defines the genes that encode specific enzyme activities required for trans-4-hydroxy-L-proline catabolism. These studies should allow the identification of hydroxyproline catabolic genes in other organisms where many of these genes are annotated as genes of unknown function.…”
Section: Discussionmentioning
confidence: 77%
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“…1B. Together with other reports (12,25,59,(62)(63)(64), this report defines the genes that encode specific enzyme activities required for trans-4-hydroxy-L-proline catabolism. These studies should allow the identification of hydroxyproline catabolic genes in other organisms where many of these genes are annotated as genes of unknown function.…”
Section: Discussionmentioning
confidence: 77%
“…The ␣-KGSADH enzyme used in these reactions was either purified HypH from S. meliloti or purified ␣-KGSADH protein from Acinetobacter baylyi (25). Similar deaminase activities were detected using either enzyme.…”
Section: Hypsmentioning
confidence: 76%
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“…Thus, NadM, which is unconditionally essential in A. baylyi, is proposed as an alternative drug target for the multidrug-resistant pathogen A. baumannii (48,49). Similar approaches were used to predict and validate a pathway to consume D-glucarate, including its regulatory mechanisms (50).…”
Section: Elucidation Of Metabolic Pathways and Novel Biochemistrymentioning
confidence: 99%
“…Galactarolactone cycloisomerase (EC 5.5.1.-) then catalyses ring opening and the formation of 3-deoxy-2-keto-l-threo-hexarate (Andberg et al, 2012). The 3-deoxy-2-keto-l-threo-hexarate is converted by a decarboxylating hydrolyase (EC 4.2.1.41) into -ketoglutaric semialdehyde (Jeffcoat et al, 1969;Aghaie et al, 2008). In the final step -ketoglutaric semialdehyde is oxidized by a dehydrogenase to -ketoglutarate, which is a metabolite of the TCA cycle (Watanabe et al, 2007).…”
Section: Introductionmentioning
confidence: 99%