about
Branched-chain amino acid catabolism in bacteriaD- and L-isoleucine metabolism and regulation of their pathways in Pseudomonas putidaMetabolic engineering of Pseudomonas sp. strain VLB120 as platform biocatalyst for the production of isobutyric acid and other secondary metabolitesThe bkdR gene of Pseudomonas putida is required for expression of the bkd operon and encodes a protein related to Lrp of Escherichia coliRole of bkdR, a transcriptional activator of the sigL-dependent isoleucine and valine degradation pathway in Bacillus subtilisBinding of L-branched-chain amino acids causes a conformational change in BkdR.Transcriptional activation of the bkd operon of Pseudomonas putida by BkdR.The g.-165 T>C Rather than Methylation Is Associated with Semen Motility in Chinese Holstein Bulls by Regulating the Transcriptional Activity of the HIBADH Gene.Mitochondrial Dihydrolipoamide Dehydrogenase is Upregulated in Response to Intermittent Hypoxic Preconditioning.Transcriptional Regulation by the Short-Chain Fatty Acyl Coenzyme A Regulator (ScfR) PccR Controls Propionyl Coenzyme A Assimilation by Rhodobacter sphaeroides.Isolation of a third lipoamide dehydrogenase from Pseudomonas putida.Molecular cloning of genes encoding branched-chain keto acid dehydrogenase of Pseudomonas putida.Isolation of a specific lipoamide dehydrogenase for a branched-chain keto acid dehydrogenase from Pseudomonas putidaConjugative mapping of pyruvate, 2-ketoglutarate, and branched-chain keto acid dehydrogenase genes in Pseudomonas putida mutants.Mutations affecting lipoamide dehydrogenases of Pseudomonas putida.Requirements for induction of the biodegradative threonine dehydratase in Escherichia coli.Common enzymes of branched-chain amino acid catabolism in Pseudomonas putida.Regulation of leucine catabolism in Pseudomonas putida.Characterization of 3-hydroxyisobutyrate dehydrogenase, HIBADH, as a sperm-motility markerIn vitro transcriptional studies of the bkd operon of Pseudomonas putida: L-branched-chain amino acids and D-leucine are the inducers.Crc is involved in catabolite repression control of the bkd operons of Pseudomonas putida and Pseudomonas aeruginosaCatabolite repression control by crc in 2xYT medium is mediated by posttranscriptional regulation of bkdR expression in Pseudomonas putida.Growth medium-dependent regulation of Myxococcus xanthus fatty acid content is controlled by the esg locus.Characterization of BkdR-DNA binding in the expression of the bkd operon of Pseudomonas putida.Resolution of branched-chain oxo acid dehydrogenase complex of Pseudomonas aeruginosa PAO.Bacterial catabolism of threonine. Threonine degradation initiated by l-threonine hydrolyase (deaminating) in a species of Corynebacterium.
P2860
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P2860
description
1972 nî lūn-bûn
@nan
1972年の論文
@ja
1972年論文
@yue
1972年論文
@zh-hant
1972年論文
@zh-hk
1972年論文
@zh-mo
1972年論文
@zh-tw
1972年论文
@wuu
1972年论文
@zh
1972年论文
@zh-cn
name
Regulation of valine catabolism in Pseudomonas putida
@ast
Regulation of valine catabolism in Pseudomonas putida
@en
type
label
Regulation of valine catabolism in Pseudomonas putida
@ast
Regulation of valine catabolism in Pseudomonas putida
@en
prefLabel
Regulation of valine catabolism in Pseudomonas putida
@ast
Regulation of valine catabolism in Pseudomonas putida
@en
P2860
P1476
Regulation of valine catabolism in Pseudomonas putida
@en
P2093
Marshall VD
P2860
P304
P407
P577
1972-06-01T00:00:00Z