Alkane hydroxylase
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Alkane Hydroxylase. In the long-chain n-alkane degrader Acinetobactersp. However it is unclear whether they cooperate with each other in alkane degradation as they do in Gram-negative bacteria. We describe here an alkane hydroxylase-encoding gene alkM and its regulatory gene alkR which are essential for growth of Acinetobacter sp. It contains a diiron non-heme active site.
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View protein in InterPro IPR033885 AlkBXylM IPR005804 FA_desaturase_dom. The hydroxylation reaction is carried out by a 41-kDa membrane-bound poly- peptide which is abundantly produced in alkane-grown P. Putida GPo1 alkane hydroxylase system consists of three components. This indicated that the strains degrading long-chain c-alkanes have potential for cleaning petroleum hydrocarbon pollutants because long-chain n-alkanes and c-alkanes remain in the soil for long periods. We describe here an alkane hydroxylase-encoding gene alkM and its regulatory gene alkR which are essential for growth of Acinetobacter sp. AlkB is a non-heme iron integral membrane protein that carries out the hydroxylation reaction Kok et al 1989.
Peterson et al 1966.
The first step of degrading long-chain c-alkanes the oxidation of hydrocarbons is catalyzed by alkane hydroxylases Alk. AlkB is a non-heme iron integral membrane protein that carries out the hydroxylation reaction Kok et al 1989. McKenna and Coon 1970. Cd03512 Alkane-hydroxylase 1 hit. This reaction remains difficult to perform by conventional chemistry and biocatalysis offers an attractive near-ambient temperature alternative. AlkB is a non-heme iron integral membrane protein which carries out the hydroxy-lation reaction 26 31 54.
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Catalyzes the hydroxylation of a methylene unit in the middle of alkane molecules to form secondary alcohols and possibly also a second hydroxylation leading to the corresponding ketones. It was shown to be an integral-membrane non-heme diiron monooxygenase AlkB requiring two electron transfer proteins named rubredoxin and. It contains a diiron non-heme active site. In this mechanism 1-alkanol is oxidized by many enzymes and converted to fatty acid which provides energy for microbial growth by virtue of the β-oxidation conversion to CO 2 Van Beilen et al 2003 Miri et al 2010 Li et al 2013. The alkane hydroxylase Alk system that is native to Pseudomonas putida GPo1 is of considerable interest for the highly specific oxidation of medium-long chain aliphatic alkanes to primary alcohols and carboxylic acids.
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In this mechanism 1-alkanol is oxidized by many enzymes and converted to fatty acid which provides energy for microbial growth by virtue of the β-oxidation conversion to CO 2 Van Beilen et al 2003 Miri et al 2010 Li et al 2013. Involved in the formation of secondary alcohols and ketones in stem cuticular wax. These enzymes hydroxylate alkanes to alcohols which are further oxidized to. The hydroxylation reaction is carried out by a 41-kDa membrane-bound poly- peptide which is abundantly produced in alkane-grown P. The aims of this study were to characterize.
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The hydroxylation reaction is carried out by a 41-kDa membrane-bound poly- peptide which is abundantly produced in alkane-grown P. AlkB is a non-heme iron integral membrane protein that carries out the hydroxylation reaction Kok et al 1989. Alkane hydroxylase AlkB rubredoxin AlkG and rubredoxin reductase AlkT. The Pseudomonas putida GPo1 alkane hydroxylase system is composed of three components. View protein in Pfam PF00487 FA_desaturase 1 hit.
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Rubredoxin 33 transfers elec-trons from the NADH-dependent flavoprotein rubredoxin re-. Putida GPo1 alkane hydroxylase system consists of three components. Alkane hydroxylase AlkB rubredoxin AlkG and rubredoxin reductase AlkT. The Pseudomonas putida GPo1 alkane hydroxylase system is composed of three components. It was shown to be an integral-membrane non-heme diiron monooxygenase AlkB requiring two electron transfer proteins named rubredoxin and.
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This indicated that the strains degrading long-chain c-alkanes have potential for cleaning petroleum hydrocarbon pollutants because long-chain n-alkanes and c-alkanes remain in the soil for long periods. Rubredoxin 33 transfers elec-trons from the NADH-dependent flavoprotein rubredoxin re-. These enzymes hydroxylate alkanes to alcohols which are further oxidized to. CYP153 and AlkB-like hydroxylases were recently discovered in Gram-positive alkane-degrading bacteria. Cd03512 Alkane-hydroxylase 1 hit.
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Alkanes are major component of crude oil that could be hydrolyzed by the enzyme of alkane hydroxylase. In this paper we cloned the CYP153 gene from a representative Gram-positiv. In this mechanism 1-alkanol is oxidized by many enzymes and converted to fatty acid which provides energy for microbial growth by virtue of the β-oxidation conversion to CO 2 Van Beilen et al 2003 Miri et al 2010 Li et al 2013. These enzymes hydroxylate alkanes to alcohols which are further oxidized to. AlkB is a non-heme iron integral membrane protein that carries out the hydroxylation reaction Kok et al 1989.
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Strain ADP1 on alkanes. The hydroxylation reaction is carried out by a 41-kDa membrane-bound poly- peptide which is abundantly produced in alkane-grown P. McKenna and Coon 1970. Putida GPo1 alkane hydroxylase system consists of three components. The are three types of alkane hydroxylase based on the chain length of alkane such as short-chain lengthSCL C 2-C 4 medium-chain lengthMCL C 5-C 17 and long-chain lengthLCL C 18.
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Van Beilen et al 1992. Putida GPo1 alkane hydroxylase system consists of three components. The terminal CH 3 residue of alkane is converted to 1-alkanol in a reaction catalyzed by an alkane hydroxylase AH system. Seven of the analyzed psychrophile genomes contained a total of 27 candidate alkane hydroxylase genes only two of which are currently annotated as alkane hydroxylase. Other names in common use include alkane 1-hydroxylase omega-hydroxylase fatty acid omega-hydroxylase alkane monooxygenase 1-hydroxylase AlkB and alkane hydroxylase.
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PTHR38674 PTHR38674 1 hit Pfam i. Smits et al 2002. This indicated that the strains degrading long-chain c-alkanes have potential for cleaning petroleum hydrocarbon pollutants because long-chain n-alkanes and c-alkanes remain in the soil for long periods. Rubredoxin 33 transfers elec-trons from the NADH-dependent flavoprotein rubredoxin re-. Other names in common use include alkane 1-hydroxylase omega-hydroxylase fatty acid omega-hydroxylase alkane monooxygenase 1-hydroxylase AlkB and alkane hydroxylase.
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In this paper we cloned the CYP153 gene from a representative Gram-positiv. Peterson et al 1966. Alkanes are major component of crude oil that could be hydrolyzed by the enzyme of alkane hydroxylase. Putida GPo1 alkane hydroxylase system consists of three components. View protein in InterPro IPR033885 AlkBXylM IPR005804 FA_desaturase_dom.
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The hydroxylation reaction is carried out by a 41-kDa membrane-bound poly- peptide which is abundantly produced in alkane-grown P. In the long-chain n-alkane degrader Acinetobactersp. Other names in common use include alkane 1-hydroxylase omega-hydroxylase fatty acid omega-hydroxylase alkane monooxygenase 1-hydroxylase AlkB and alkane hydroxylase. Van Beilen et al 1992. Involved in the formation of secondary alcohols and ketones in stem cuticular wax.
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Strain ADP1 on alkanes. The hydroxylation reaction is carried out by a 41-kDa membrane-bound poly- peptide which is abundantly produced in alkane-grown P. McKenna and Coon 1970. In the long-chain n-alkane degrader Acinetobactersp. The first step of degrading long-chain c-alkanes the oxidation of hydrocarbons is catalyzed by alkane hydroxylases Alk.
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Oleouorans Benson et al 1979. AlkB is a non-heme iron integral membrane protein that carries out the hydroxylation reaction Kok et al 1989. The first step of degrading long-chain c-alkanes the oxidation of hydrocarbons is catalyzed by alkane hydroxylases Alk. However it is unclear whether they cooperate with each other in alkane degradation as they do in Gram-negative bacteria. The aims of this study were to characterize.
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These candidates were mostly related to the AlkB and cytochrome p450 alkane hydroxylases but several homologues of the LadA and AlmA enzymes significant for their ability to degrade long-chain alkanes. The alkane hydroxylase Alk system that is native to Pseudomonas putida GPo1 is of considerable interest for the highly specific oxidation of medium-long chain aliphatic alkanes to primary alcohols and carboxylic acids. The aims of this study were to characterize. Rubredoxin 33 transfers elec-trons from the NADH-dependent flavoprotein rubredoxin re-. In this paper we cloned the CYP153 gene from a representative Gram-positiv.
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The first step of degrading long-chain c-alkanes the oxidation of hydrocarbons is catalyzed by alkane hydroxylases Alk. Other names in common use include alkane 1-hydroxylase omega-hydroxylase fatty acid omega-hydroxylase alkane monooxygenase 1-hydroxylase AlkB and alkane hydroxylase. Alkane hydroxylase is a three-component monoxygenase Benson et al 1977. View protein in Pfam PF00487 FA_desaturase 1 hit. Catalyzes the hydroxylation of a methylene unit in the middle of alkane molecules to form secondary alcohols and possibly also a second hydroxylation leading to the corresponding ketones.
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However it is unclear whether they cooperate with each other in alkane degradation as they do in Gram-negative bacteria. View protein in Pfam PF00487 FA_desaturase 1 hit. Alkane hydroxylase AlkB rubredoxin AlkG and rubredoxin reductase AlkT. The first step of degrading long-chain c-alkanes the oxidation of hydrocarbons is catalyzed by alkane hydroxylases Alk. Alkane hydroxylase is a three-component monoxygenase Benson et al 1977.
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The first step of degrading long-chain c-alkanes the oxidation of hydrocarbons is catalyzed by alkane hydroxylases Alk. Strain ADP1 on alkanes. In this mechanism 1-alkanol is oxidized by many enzymes and converted to fatty acid which provides energy for microbial growth by virtue of the β-oxidation conversion to CO 2 Van Beilen et al 2003 Miri et al 2010 Li et al 2013. The Pseudomonas putida GPo1 alkane hydroxylase system is composed of three components. The alkane hydroxylase of one particular Pseudomonas isolate now known as P.
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The alkane hydroxylase of one particular Pseudomonas isolate now known as P. In this mechanism 1-alkanol is oxidized by many enzymes and converted to fatty acid which provides energy for microbial growth by virtue of the β-oxidation conversion to CO 2 Van Beilen et al 2003 Miri et al 2010 Li et al 2013. The systematic name of this enzyme class is alkane reduced-rubredoxinoxygen 1-oxidoreductase. The Pseudomonas putida GPo1 alkane hydroxylase system is composed of three components. The are three types of alkane hydroxylase based on the chain length of alkane such as short-chain lengthSCL C 2-C 4 medium-chain lengthMCL C 5-C 17 and long-chain lengthLCL C 18.
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