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Hrdlo Služka Berri p hydroxybenzoate hydroxylase skaut dodatek Škeble

PDF] Properties of p-hydroxybenzoate hydroxylase when stabilized in its  open conformation. | Semantic Scholar
PDF] Properties of p-hydroxybenzoate hydroxylase when stabilized in its open conformation. | Semantic Scholar

1 Part 4 Coenzymes-Dependent Enzyme Mechanisms Professor A. S. Alhomida  Disclaimer The texts, tables and images contained in this course  presentation are. - ppt download
1 Part 4 Coenzymes-Dependent Enzyme Mechanisms Professor A. S. Alhomida Disclaimer The texts, tables and images contained in this course presentation are. - ppt download

M-CSA Mechanism and Catalytic Site Atlas
M-CSA Mechanism and Catalytic Site Atlas

Protein and ligand dynamics in 4-hydroxybenzoate hydroxylase | PNAS
Protein and ligand dynamics in 4-hydroxybenzoate hydroxylase | PNAS

A high-throughput visual screening method for p-hydroxybenzoate hydroxylase  to increase phenolic compounds biosynthesis | Biotechnology for Biofuels  and Bioproducts | Full Text
A high-throughput visual screening method for p-hydroxybenzoate hydroxylase to increase phenolic compounds biosynthesis | Biotechnology for Biofuels and Bioproducts | Full Text

Frontiers | Pyridine Nucleotide Coenzyme Specificity of p-Hydroxybenzoate  Hydroxylase and Related Flavoprotein Monooxygenases
Frontiers | Pyridine Nucleotide Coenzyme Specificity of p-Hydroxybenzoate Hydroxylase and Related Flavoprotein Monooxygenases

1.14.13.64: 4-hydroxybenzoate 1-hydroxylase - BRENDA Enzyme Database
1.14.13.64: 4-hydroxybenzoate 1-hydroxylase - BRENDA Enzyme Database

RCSB PDB - 1BKW: p-Hydroxybenzoate hydroxylase (phbh) mutant with cys116  replaced by ser (c116s) and arg44 replaced by lys (r44k), in complex with  fad and 4-hydroxybenzoic acid
RCSB PDB - 1BKW: p-Hydroxybenzoate hydroxylase (phbh) mutant with cys116 replaced by ser (c116s) and arg44 replaced by lys (r44k), in complex with fad and 4-hydroxybenzoic acid

PDF) Studies on the Effector Specificity of p-Hydroxybenzoate Hydroxylase  from Pseudomonas fluorescens | Thomas Spector - Academia.edu
PDF) Studies on the Effector Specificity of p-Hydroxybenzoate Hydroxylase from Pseudomonas fluorescens | Thomas Spector - Academia.edu

Molecular and biochemical characterization of the xlnD-encoded 3- hydroxybenzoate 6-hydroxylase involved in the degradation of 2,5-xylenol  via the gentisate pathway in Pseudomonas alcaligenes NCIMB 9867. - Abstract  - Europe PMC
Molecular and biochemical characterization of the xlnD-encoded 3- hydroxybenzoate 6-hydroxylase involved in the degradation of 2,5-xylenol via the gentisate pathway in Pseudomonas alcaligenes NCIMB 9867. - Abstract - Europe PMC

Oxygen Reactions in p-Hydroxybenzoate Hydroxylase Utilize the H-Bond  Network during Catalysis | Biochemistry
Oxygen Reactions in p-Hydroxybenzoate Hydroxylase Utilize the H-Bond Network during Catalysis | Biochemistry

Altered Balance of Half-reactions in p-Hydroxybenzoate Hydroxylase Caused  by Substituting the 2′-Carbon of FAD with Fluorine* - Journal of Biological  Chemistry
Altered Balance of Half-reactions in p-Hydroxybenzoate Hydroxylase Caused by Substituting the 2′-Carbon of FAD with Fluorine* - Journal of Biological Chemistry

HBH-311, p-Hydroxybenzoate hydroxylase│酵素一覧│東洋紡バイオ事業総括部│東洋紡
HBH-311, p-Hydroxybenzoate hydroxylase│酵素一覧│東洋紡バイオ事業総括部│東洋紡

Understanding the Molecular Mechanism Underlying the High Catalytic  Activity of p-Hydroxybenzoate Hydroxylase Mutants for Producing Gallic Acid  | Biochemistry
Understanding the Molecular Mechanism Underlying the High Catalytic Activity of p-Hydroxybenzoate Hydroxylase Mutants for Producing Gallic Acid | Biochemistry

Genomic and Functional Analyses of the Gentisate and Protocatechuate  Ring-Cleavage Pathways and Related 3-Hydroxybenzoate and 4-Hydroxybenzoate  Peripheral Pathways in Burkholderia xenovorans LB400 | PLOS ONE
Genomic and Functional Analyses of the Gentisate and Protocatechuate Ring-Cleavage Pathways and Related 3-Hydroxybenzoate and 4-Hydroxybenzoate Peripheral Pathways in Burkholderia xenovorans LB400 | PLOS ONE

Natural diversity of FAD-dependent 4-hydroxybenzoate hydroxylases
Natural diversity of FAD-dependent 4-hydroxybenzoate hydroxylases

Protein dynamics and electrostatics in the function of p-hydroxybenzoate  hydroxylase - ScienceDirect
Protein dynamics and electrostatics in the function of p-hydroxybenzoate hydroxylase - ScienceDirect

Hydroxylation of p-hydroxybenzoate in meta-position by microbial... |  Download Scientific Diagram
Hydroxylation of p-hydroxybenzoate in meta-position by microbial... | Download Scientific Diagram

Frontiers | Pyridine Nucleotide Coenzyme Specificity of p-Hydroxybenzoate  Hydroxylase and Related Flavoprotein Monooxygenases
Frontiers | Pyridine Nucleotide Coenzyme Specificity of p-Hydroxybenzoate Hydroxylase and Related Flavoprotein Monooxygenases

4 Hydroxybenzoate 3 Monooxygenase - an overview | ScienceDirect Topics
4 Hydroxybenzoate 3 Monooxygenase - an overview | ScienceDirect Topics

PDF] The Structure of p-Hydroxybenzoate Hydroxylase by Herman Schreuder,  Jan Metske Van Der Laan, Wim G. J. Hol, Jan Drenth ·  10.1201/9781351070584-2 · OA.mg
PDF] The Structure of p-Hydroxybenzoate Hydroxylase by Herman Schreuder, Jan Metske Van Der Laan, Wim G. J. Hol, Jan Drenth · 10.1201/9781351070584-2 · OA.mg

A functional 4-hydroxybenzoate degradation pathway in the phytopathogen  Xanthomonas campestris is required for full pathogenicity | Scientific  Reports
A functional 4-hydroxybenzoate degradation pathway in the phytopathogen Xanthomonas campestris is required for full pathogenicity | Scientific Reports

KEGG ENZYME: 1.14.13.33
KEGG ENZYME: 1.14.13.33

A growth-based, high-throughput selection platform enables remodeling of 4-hydroxybenzoate  hydroxylase active site | bioRxiv
A growth-based, high-throughput selection platform enables remodeling of 4-hydroxybenzoate hydroxylase active site | bioRxiv

4-hydroxybenzoate 3-monooxygenase - Wikipedia
4-hydroxybenzoate 3-monooxygenase - Wikipedia

Oxygen Reactions in p-Hydroxybenzoate Hydroxylase Utilize the H-Bond  Network during Catalysis | Biochemistry
Oxygen Reactions in p-Hydroxybenzoate Hydroxylase Utilize the H-Bond Network during Catalysis | Biochemistry