cpmo variant from comamonas sp. strain ncimb 9872 (NCIMB Ltd)
90
Structured Review
NCIMB Ltd
cpmo variant from comamonas sp. strain ncimb 9872
Cpmo Variant From Comamonas Sp. Strain Ncimb 9872, supplied by NCIMB Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/comamonas+sp%2E+strain+ncimb+9872/comamonas+sp++strain+ncimb+9872/pmc06532031-64-27-33
Average 90 stars, based on 1 article reviews
Cpmo Variant From Comamonas Sp. Strain Ncimb 9872, supplied by NCIMB Ltd, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/comamonas+sp%2E+strain+ncimb+9872/comamonas+sp++strain+ncimb+9872/pmc06532031-64-27-33
Average 90 stars, based on 1 article reviews
cpmo variant from comamonas sp. strain ncimb 9872 - by Bioz Stars,
2026-09
90/100 stars
Images
Related Articles
Sequencing:Article Title: Pseudomonad Cyclopentadecanone Monooxygenase Displaying an Uncommon Spectrum of Baeyer-Villiger Oxidations of Cyclic Ketones Article Snippet: The origins of the various sequences, besides CpdB (this study), are shown as superscripts in the far left column as follows: 1, B. japonicum (Q89NI1); 2, S. avermitilis (Q82IY8); 3, Streptomyces coelicolor (Q9RL17); 4, M. paratuberculosis (Q73U59); 5, R. ruber (Q938F6); 6, P. fluorescens ACB (AAK54073); 7, Article Title: Flavoprotein monooxygenases, a diverse class of oxidative biocatalysts. Article Snippet: Cloning and characterization of a gene cluster involved in cyclopentanol metabolism in Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: Bacterial strains and plasmids used in this study Strain or plasmid Relevant characteristics Reference or Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: An N-terminal 29-amino-acid sequence of CPMO has been determined ( 8 ). fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window FIG. 1. caption a7 Degradation pathway for cyclopentanol by Article Title: Whole Genome Wide Expression Profiles on Germination of Verticillium dahliae Microsclerotia Article Snippet: It has been most extensively studied in Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Interestingly, exceptions to this coupled gene arrangement are those provided by two prototypical microorganisms of cycloalkanol degradation, viz ., Article Title: Discovery of Two Native Baeyer-Villiger Monooxygenases for Asymmetric Synthesis of Bulky Chiral Sulfoxides Article Snippet: Cloning and 470 characterization of a gene cluster involved in cyclopentanol metabolism in 471 Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Evidently, this sequence does not cluster with CpdC in a phylogenetic analysis but closer to -valerolactone hydrolase (CpnC) of Plasmid Preparation:Article Title: Pseudomonad Cyclopentadecanone Monooxygenase Displaying an Uncommon Spectrum of Baeyer-Villiger Oxidations of Cyclic Ketones Article Snippet: The origins of the various sequences, besides CpdB (this study), are shown as superscripts in the far left column as follows: 1, B. japonicum (Q89NI1); 2, S. avermitilis (Q82IY8); 3, Streptomyces coelicolor (Q9RL17); 4, M. paratuberculosis (Q73U59); 5, R. ruber (Q938F6); 6, P. fluorescens ACB (AAK54073); 7, Article Title: Flavoprotein monooxygenases, a diverse class of oxidative biocatalysts. Article Snippet: Cloning and characterization of a gene cluster involved in cyclopentanol metabolism in Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: Bacterial strains and plasmids used in this study Strain or plasmid Relevant characteristics Reference or Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: An N-terminal 29-amino-acid sequence of CPMO has been determined ( 8 ). fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window FIG. 1. caption a7 Degradation pathway for cyclopentanol by Article Title: Whole Genome Wide Expression Profiles on Germination of Verticillium dahliae Microsclerotia Article Snippet: It has been most extensively studied in Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Interestingly, exceptions to this coupled gene arrangement are those provided by two prototypical microorganisms of cycloalkanol degradation, viz ., Article Title: Discovery of Two Native Baeyer-Villiger Monooxygenases for Asymmetric Synthesis of Bulky Chiral Sulfoxides Article Snippet: Cloning and 470 characterization of a gene cluster involved in cyclopentanol metabolism in 471 Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Evidently, this sequence does not cluster with CpdC in a phylogenetic analysis but closer to -valerolactone hydrolase (CpnC) of Expressing:Article Title: Pseudomonad Cyclopentadecanone Monooxygenase Displaying an Uncommon Spectrum of Baeyer-Villiger Oxidations of Cyclic Ketones Article Snippet: The origins of the various sequences, besides CpdB (this study), are shown as superscripts in the far left column as follows: 1, B. japonicum (Q89NI1); 2, S. avermitilis (Q82IY8); 3, Streptomyces coelicolor (Q9RL17); 4, M. paratuberculosis (Q73U59); 5, R. ruber (Q938F6); 6, P. fluorescens ACB (AAK54073); 7, Article Title: Flavoprotein monooxygenases, a diverse class of oxidative biocatalysts. Article Snippet: Cloning and characterization of a gene cluster involved in cyclopentanol metabolism in Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: Bacterial strains and plasmids used in this study Strain or plasmid Relevant characteristics Reference or Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: An N-terminal 29-amino-acid sequence of CPMO has been determined ( 8 ). fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window FIG. 1. caption a7 Degradation pathway for cyclopentanol by Article Title: Whole Genome Wide Expression Profiles on Germination of Verticillium dahliae Microsclerotia Article Snippet: It has been most extensively studied in Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Interestingly, exceptions to this coupled gene arrangement are those provided by two prototypical microorganisms of cycloalkanol degradation, viz ., Article Title: Discovery of Two Native Baeyer-Villiger Monooxygenases for Asymmetric Synthesis of Bulky Chiral Sulfoxides Article Snippet: Cloning and 470 characterization of a gene cluster involved in cyclopentanol metabolism in 471 Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Evidently, this sequence does not cluster with CpdC in a phylogenetic analysis but closer to -valerolactone hydrolase (CpnC) of Cloning:Article Title: Pseudomonad Cyclopentadecanone Monooxygenase Displaying an Uncommon Spectrum of Baeyer-Villiger Oxidations of Cyclic Ketones Article Snippet: The origins of the various sequences, besides CpdB (this study), are shown as superscripts in the far left column as follows: 1, B. japonicum (Q89NI1); 2, S. avermitilis (Q82IY8); 3, Streptomyces coelicolor (Q9RL17); 4, M. paratuberculosis (Q73U59); 5, R. ruber (Q938F6); 6, P. fluorescens ACB (AAK54073); 7, Article Title: Flavoprotein monooxygenases, a diverse class of oxidative biocatalysts. Article Snippet: Cloning and characterization of a gene cluster involved in cyclopentanol metabolism in Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: Bacterial strains and plasmids used in this study Strain or plasmid Relevant characteristics Reference or Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: An N-terminal 29-amino-acid sequence of CPMO has been determined ( 8 ). fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window FIG. 1. caption a7 Degradation pathway for cyclopentanol by Article Title: Whole Genome Wide Expression Profiles on Germination of Verticillium dahliae Microsclerotia Article Snippet: It has been most extensively studied in Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Interestingly, exceptions to this coupled gene arrangement are those provided by two prototypical microorganisms of cycloalkanol degradation, viz ., Article Title: Discovery of Two Native Baeyer-Villiger Monooxygenases for Asymmetric Synthesis of Bulky Chiral Sulfoxides Article Snippet: Cloning and 470 characterization of a gene cluster involved in cyclopentanol metabolism in 471 Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Evidently, this sequence does not cluster with CpdC in a phylogenetic analysis but closer to -valerolactone hydrolase (CpnC) of Polymerase Chain Reaction:Article Title: Pseudomonad Cyclopentadecanone Monooxygenase Displaying an Uncommon Spectrum of Baeyer-Villiger Oxidations of Cyclic Ketones Article Snippet: The origins of the various sequences, besides CpdB (this study), are shown as superscripts in the far left column as follows: 1, B. japonicum (Q89NI1); 2, S. avermitilis (Q82IY8); 3, Streptomyces coelicolor (Q9RL17); 4, M. paratuberculosis (Q73U59); 5, R. ruber (Q938F6); 6, P. fluorescens ACB (AAK54073); 7, Article Title: Flavoprotein monooxygenases, a diverse class of oxidative biocatalysts. Article Snippet: Cloning and characterization of a gene cluster involved in cyclopentanol metabolism in Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: Bacterial strains and plasmids used in this study Strain or plasmid Relevant characteristics Reference or Article Title: Cloning and Characterization of a Gene Cluster Involved in Cyclopentanol Metabolism in Comamonas sp. Strain NCIMB 9872 and Biotransformations Effected by Escherichia coli -Expressed Cyclopentanone 1,2-Monooxygenase Article Snippet: An N-terminal 29-amino-acid sequence of CPMO has been determined ( 8 ). fig ft0 fig mode=article f1 fig/graphic|fig/alternatives/graphic mode="anchored" m1 Open in a separate window FIG. 1. caption a7 Degradation pathway for cyclopentanol by Article Title: Whole Genome Wide Expression Profiles on Germination of Verticillium dahliae Microsclerotia Article Snippet: It has been most extensively studied in Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Interestingly, exceptions to this coupled gene arrangement are those provided by two prototypical microorganisms of cycloalkanol degradation, viz ., Article Title: Discovery of Two Native Baeyer-Villiger Monooxygenases for Asymmetric Synthesis of Bulky Chiral Sulfoxides Article Snippet: Cloning and 470 characterization of a gene cluster involved in cyclopentanol metabolism in 471 Article Title: Characterization of CpdC, a Large-Ring Lactone-Hydrolyzing Enzyme from Pseudomonas sp. Strain HI-70, and Its Use as a Fusion Tag Facilitating Overproduction of Proteins in Escherichia coli Article Snippet: Evidently, this sequence does not cluster with CpdC in a phylogenetic analysis but closer to -valerolactone hydrolase (CpnC) of |