Pseudomonas putida strain CSV86 metabolizes variety of aromatic compounds as the sole carbon source. Genome analysis revealed the presence of genes encoding putative transporters for benzoate, p-hydroxybenzoate, phenylacetate, p-hydroxyphenylacetate and vanillate. Bioinformatic analysis revealed that benzoate transport and metabolism genes are clustered at the ben locus as benK-catA-benE-benF. Protein topology prediction suggests that BenK (aromatic acid-H+ symporter of major facilitator superfamily) has 12 transmembrane a-helices with the conserved motif LADRXGRKX in loop 2, while BenE (benzoate-H+ symporter protein) has 11 predicted transmembrane alpha-helices. benF and catA encode benzoate specific porin, OprD and catechol 1,2-dioxygenas...
Pseudomonas putida CSV86 utilizes aromatic compounds in preference to glucose and coutilizes aromati...
Albicidins are potent DNA-gyrase-inhibiting antibiotics and phytotoxins synthesised by Xanthomonas a...
Cupriavidus pinatubonensis JMP134, like many other environmental bacteria, uses a range of aromatic ...
The effective elimination of xenobiotic pollutants from the environment can be achieved by efficient...
Pseudomonas putida KT2440-JD1 is able to cometabolize benzoate to cis, cis-muconate in the presence ...
Pseudomonas putida KT2440-JD1 is able to cometabolize benzoate to cis, cis-muconate in the presence ...
A transcriptomics and proteomics approach was employed to study the expression changes associated wi...
A denitrifying Pseudomonas sp. is able to oxidize aromatic compounds completely to CO2, both aerobic...
Polyextremophilic, hydrocarbonoclastic Pseudomonas aeruginosa san ai can survive under extreme envir...
Several yeast species catabolize hydroxyderivatives of benzoic acid. However, the nature of carriers...
Pseudomonas putida S12.49, a mutant stain of P. putida S12 that tolerates up to 20 mM benzene, was o...
Recent microarray experiments suggested that Burkholderia xenovorans LB400, a potent polychlorinated...
Pseudomonas putida KT2440-JD1 was derived from P. putida KT2440 after N-methyl-N'-nitro-N-nitrosogua...
The aromatic acid:H(+) symporter family of integral membrane proteins play an important role in the ...
Anaerobic degradation of complex organic compounds by microorganisms is crucial for development of i...
Pseudomonas putida CSV86 utilizes aromatic compounds in preference to glucose and coutilizes aromati...
Albicidins are potent DNA-gyrase-inhibiting antibiotics and phytotoxins synthesised by Xanthomonas a...
Cupriavidus pinatubonensis JMP134, like many other environmental bacteria, uses a range of aromatic ...
The effective elimination of xenobiotic pollutants from the environment can be achieved by efficient...
Pseudomonas putida KT2440-JD1 is able to cometabolize benzoate to cis, cis-muconate in the presence ...
Pseudomonas putida KT2440-JD1 is able to cometabolize benzoate to cis, cis-muconate in the presence ...
A transcriptomics and proteomics approach was employed to study the expression changes associated wi...
A denitrifying Pseudomonas sp. is able to oxidize aromatic compounds completely to CO2, both aerobic...
Polyextremophilic, hydrocarbonoclastic Pseudomonas aeruginosa san ai can survive under extreme envir...
Several yeast species catabolize hydroxyderivatives of benzoic acid. However, the nature of carriers...
Pseudomonas putida S12.49, a mutant stain of P. putida S12 that tolerates up to 20 mM benzene, was o...
Recent microarray experiments suggested that Burkholderia xenovorans LB400, a potent polychlorinated...
Pseudomonas putida KT2440-JD1 was derived from P. putida KT2440 after N-methyl-N'-nitro-N-nitrosogua...
The aromatic acid:H(+) symporter family of integral membrane proteins play an important role in the ...
Anaerobic degradation of complex organic compounds by microorganisms is crucial for development of i...
Pseudomonas putida CSV86 utilizes aromatic compounds in preference to glucose and coutilizes aromati...
Albicidins are potent DNA-gyrase-inhibiting antibiotics and phytotoxins synthesised by Xanthomonas a...
Cupriavidus pinatubonensis JMP134, like many other environmental bacteria, uses a range of aromatic ...