Biochemical and genetic investigation of initial reactions in aerobic degradation of the bile acid cholate in Pseudomonas sp. strain Chol1.
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Activity of 3-ketosteroid 9α-hydroxylase (KshAB) indicates cholesterol side chain and ring degradation occur simultaneously in Mycobacterium tuberculosisSubstrate Specificities and Conformational Flexibility of 3-Ketosteroid 9α-HydroxylasesSubstrate uptake and subcellular compartmentation of anoxic cholesterol catabolism in Sterolibacterium denitrificansPermanent draft genome sequence of Comamonas testosteroni KF-1Bacterial degradation of bile salts.Identification of bypass reactions leading to the formation of one central steroid degradation intermediate in metabolism of different bile salts in Pseudomonas sp. strain Chol1.FadD19 of Rhodococcus rhodochrous DSM43269, a steroid-coenzyme A ligase essential for degradation of C-24 branched sterol side chains.The essential function of genes for a hydratase and an aldehyde dehydrogenase for growth of Pseudomonas sp. strain Chol1 with the steroid compound cholate indicates an aldolytic reaction step for deacetylation of the side chainActinobacterial acyl coenzyme A synthetases involved in steroid side-chain catabolism.Two transporters essential for reassimilation of novel cholate metabolites by Rhodococcus jostii RHA1.Gene cluster encoding cholate catabolism in Rhodococcus spp.Multiplicity of 3-Ketosteroid-9α-Hydroxylase enzymes in Rhodococcus rhodochrous DSM43269 for specific degradation of different classes of steroids.Degradation of the acyl side chain of the steroid compound cholate in Pseudomonas sp. strain Chol1 proceeds via an aldehyde intermediate.Genome Sequence of Pseudomonas sp. Strain Chol1, a Model Organism for the Degradation of Bile Salts and Other Steroid Compounds.Identification and Characterization of the Genes and Enzymes Belonging to the Bile Acid Catabolic Pathway in Pseudomonas.Evidence of distinct pathways for bacterial degradation of the steroid compound cholate suggests the potential for metabolic interactions by interspecies cross-feeding.Metagenomes Reveal Global Distribution of Bacterial Steroid Catabolism in Natural, Engineered, and Host Environments.A Novel Steroid-Coenzyme A Ligase from Novosphingobium sp. Strain Chol11 Is Essential for an Alternative Degradation Pathway for Bile Salts.Investigations of novel unsaturated bile salts of male sea lamprey as potential chemical cues.An unexplored pathway for degradation of cholate requires a 7α-hydroxysteroid dehydratase and contributes to a broad metabolic repertoire for the utilization of bile salts in Novosphingobium sp. strain Chol11.Isolation of cholesterol- and deoxycholate-degrading bacteria from soil samples: evidence of a common pathway.Functional analyses of three acyl-CoA synthetases involved in bile acid degradation in Pseudomonas putida DOC21
P2860
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P2860
Biochemical and genetic investigation of initial reactions in aerobic degradation of the bile acid cholate in Pseudomonas sp. strain Chol1.
description
2007 nî lūn-bûn
@nan
2007年の論文
@ja
2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
2007年论文
@zh
2007年论文
@zh-cn
name
Biochemical and genetic invest ...... Pseudomonas sp. strain Chol1.
@en
type
label
Biochemical and genetic invest ...... Pseudomonas sp. strain Chol1.
@en
prefLabel
Biochemical and genetic invest ...... Pseudomonas sp. strain Chol1.
@en
P2093
P2860
P50
P356
P1476
Biochemical and genetic invest ...... Pseudomonas sp. strain Chol1.
@en
P2093
Anke Friemel
Antoinette Birkenmaier
Bodo Philipp
Heiko M Moeller
Henrike Erdbrink
René Schoenenberger
P2860
P304
P356
10.1128/JB.00665-07
P577
2007-08-10T00:00:00Z