BRENDA - Enzyme Database
show all sequences of 1.11.1.18

On the reactivity of bromoperoxidase I (Ascophyllum nodosum) in buffered organic media: Formation of carbon bromine bonds

Hartung, J.; Dumont, Y.; Greb, M.; Hach, D.; Koehler, F.; Schulz, H.; Casny, M.; Rehder, D.; Vilter, H.; Pure Appl. Chem. 81, 1251-1264 (2009)
No PubMed abstract available

Data extracted from this reference:

General Stability
General Stability
Organism
activity half-life times increase along the series of buffers: phosphate
Ascophyllum nodosum
Organism
Organism
Primary Accession No. (UniProt)
Commentary
Textmining
Ascophyllum nodosum
-
-
-
Storage Stability
Storage Stability
Organism
20°C, in 0.001 mM H2O2-incubated, MES-buffered (pH 6.22) aqueous alcoholic solution, half-life time of about 60 days
Ascophyllum nodosum
20°C, in 0.001 mM NaCl-incubated, MES-buffered (pH 6.22) aqueous alcoholic solution, half-life time of about 24 days
Ascophyllum nodosum
Substrates and Products (Substrate)
Substrates
Commentary Substrates
Literature (Substrates)
Organism
Products
Commentary (Products)
Literature (Products)
Organism (Products)
Reversibility
Br- + H2O2 + (3R)-3-bromo-2,6-dimethylhept-5-en-2-ol
-
701152
Ascophyllum nodosum
3,5-dibromo-2,6-dimethylheptane-2,6-diol + H2O
70% yield, at pH 6.0
-
-
?
Br- + H2O2 + 1-phenylpent-4-en-1-ol
-
701152
Ascophyllum nodosum
4-bromo-1-phenylpentane-1,5-diol + 5-bromo-1-phenylpentane-1,4-diol + 2-(bromomethyl)-5-phenyltetrahydrofuran + H2O
30% yield of 4-bromo-1-phenylpentane-1,5-diol, 28% yield of 5-bromo-1-phenylpentane-1,4-diol, and 25% yield of 2-(bromomethyl)-5-phenyltetrahydrofuran, at pH 6.0
-
-
?
Br- + H2O2 + 5-methyl-1-phenylhex-4-en-1-ol
-
701152
Ascophyllum nodosum
4-bromo-5-methyl-1-phenylhexane-1,5-diol + 2-(1-bromo-1-methylethyl)-5-phenyltetrahydrofuran + 3-bromo-2,2-dimethyl-6-phenyltetrahydro-2H-pyran + H2O
69% yield of 4-bromo-5-methyl-1-phenylhexane-1,5-diol, 6% yield of 2-(1-bromo-1-methylethyl)-5-phenyltetrahydrofuran, and 9% yield of 3-bromo-2,2-dimethyl-6-phenyltetrahydro-2H-pyran, at pH 6.0
-
-
?
Br- + H2O2 + methyl pyrrole-2-carboxylate
-
701152
Ascophyllum nodosum
methyl 5-amino-4-bromocyclopenta-1,3-diene-1-carboxylate + methyl 5-amino-3-bromocyclopenta-1,3-diene-1-carboxylate + methyl 5-amino-3,4-dibromocyclopenta-1,3-diene-1-carboxylate + H2O
5% yield of methyl 5-amino-4-bromocyclopenta-1,3-diene-1-carboxylate, 59% yield of methyl 5-amino-3-bromocyclopenta-1,3-diene-1-carboxylate, and 5% yield of methyl 5-amino-3,4-dibromocyclopenta-1,3-diene-1-carboxylate, at pH 6.3 and 25°C
-
-
?
Br- + H2O2 + monochlorodimedone
-
701152
Ascophyllum nodosum
H2O + ?
-
-
-
?
I- + H2O2
-
701152
Ascophyllum nodosum
triiodide + ?
-
-
-
?
Cofactor
Cofactor
Commentary
Organism
Structure
additional information
the enzyme does require no additional cofactor
Ascophyllum nodosum
Cofactor (protein specific)
Cofactor
Commentary
Organism
Structure
additional information
the enzyme does require no additional cofactor
Ascophyllum nodosum
General Stability (protein specific)
General Stability
Organism
activity half-life times increase along the series of buffers: phosphate
Ascophyllum nodosum
Storage Stability (protein specific)
Storage Stability
Organism
20°C, in 0.001 mM H2O2-incubated, MES-buffered (pH 6.22) aqueous alcoholic solution, half-life time of about 60 days
Ascophyllum nodosum
20°C, in 0.001 mM NaCl-incubated, MES-buffered (pH 6.22) aqueous alcoholic solution, half-life time of about 24 days
Ascophyllum nodosum
Substrates and Products (Substrate) (protein specific)
Substrates
Commentary Substrates
Literature (Substrates)
Organism
Products
Commentary (Products)
Literature (Products)
Organism (Products)
Reversibility
Br- + H2O2 + (3R)-3-bromo-2,6-dimethylhept-5-en-2-ol
-
701152
Ascophyllum nodosum
3,5-dibromo-2,6-dimethylheptane-2,6-diol + H2O
70% yield, at pH 6.0
-
-
?
Br- + H2O2 + 1-phenylpent-4-en-1-ol
-
701152
Ascophyllum nodosum
4-bromo-1-phenylpentane-1,5-diol + 5-bromo-1-phenylpentane-1,4-diol + 2-(bromomethyl)-5-phenyltetrahydrofuran + H2O
30% yield of 4-bromo-1-phenylpentane-1,5-diol, 28% yield of 5-bromo-1-phenylpentane-1,4-diol, and 25% yield of 2-(bromomethyl)-5-phenyltetrahydrofuran, at pH 6.0
-
-
?
Br- + H2O2 + 5-methyl-1-phenylhex-4-en-1-ol
-
701152
Ascophyllum nodosum
4-bromo-5-methyl-1-phenylhexane-1,5-diol + 2-(1-bromo-1-methylethyl)-5-phenyltetrahydrofuran + 3-bromo-2,2-dimethyl-6-phenyltetrahydro-2H-pyran + H2O
69% yield of 4-bromo-5-methyl-1-phenylhexane-1,5-diol, 6% yield of 2-(1-bromo-1-methylethyl)-5-phenyltetrahydrofuran, and 9% yield of 3-bromo-2,2-dimethyl-6-phenyltetrahydro-2H-pyran, at pH 6.0
-
-
?
Br- + H2O2 + methyl pyrrole-2-carboxylate
-
701152
Ascophyllum nodosum
methyl 5-amino-4-bromocyclopenta-1,3-diene-1-carboxylate + methyl 5-amino-3-bromocyclopenta-1,3-diene-1-carboxylate + methyl 5-amino-3,4-dibromocyclopenta-1,3-diene-1-carboxylate + H2O
5% yield of methyl 5-amino-4-bromocyclopenta-1,3-diene-1-carboxylate, 59% yield of methyl 5-amino-3-bromocyclopenta-1,3-diene-1-carboxylate, and 5% yield of methyl 5-amino-3,4-dibromocyclopenta-1,3-diene-1-carboxylate, at pH 6.3 and 25°C
-
-
?
Br- + H2O2 + monochlorodimedone
-
701152
Ascophyllum nodosum
H2O + ?
-
-
-
?
I- + H2O2
-
701152
Ascophyllum nodosum
triiodide + ?
-
-
-
?
Other publictions for EC 1.11.1.18
No.
1st author
Pub Med
title
organims
journal
volume
pages
year
Activating Compound
Application
Cloned(Commentary)
Crystallization (Commentary)
Engineering
General Stability
Inhibitors
KM Value [mM]
Localization
Metals/Ions
Molecular Weight [Da]
Natural Substrates/ Products (Substrates)
Organic Solvent Stability
Organism
Oxidation Stability
Posttranslational Modification
Purification (Commentary)
Reaction
Renatured (Commentary)
Source Tissue
Specific Activity [micromol/min/mg]
Storage Stability
Substrates and Products (Substrate)
Subunits
Temperature Optimum [°C]
Temperature Range [°C]
Temperature Stability [°C]
Turnover Number [1/s]
pH Optimum
pH Range
pH Stability
Cofactor
Ki Value [mM]
pI Value
IC50 Value
Activating Compound (protein specific)
Application (protein specific)
Cloned(Commentary) (protein specific)
Cofactor (protein specific)
Crystallization (Commentary) (protein specific)
Engineering (protein specific)
General Stability (protein specific)
IC50 Value (protein specific)
Inhibitors (protein specific)
Ki Value [mM] (protein specific)
KM Value [mM] (protein specific)
Localization (protein specific)
Metals/Ions (protein specific)
Molecular Weight [Da] (protein specific)
Natural Substrates/ Products (Substrates) (protein specific)
Organic Solvent Stability (protein specific)
Oxidation Stability (protein specific)
Posttranslational Modification (protein specific)
Purification (Commentary) (protein specific)
Renatured (Commentary) (protein specific)
Source Tissue (protein specific)
Specific Activity [micromol/min/mg] (protein specific)
Storage Stability (protein specific)
Substrates and Products (Substrate) (protein specific)
Subunits (protein specific)
Temperature Optimum [°C] (protein specific)
Temperature Range [°C] (protein specific)
Temperature Stability [°C] (protein specific)
Turnover Number [1/s] (protein specific)
pH Optimum (protein specific)
pH Range (protein specific)
pH Stability (protein specific)
pI Value (protein specific)
Expression
General Information
General Information (protein specific)
Expression (protein specific)
KCat/KM [mM/s]
KCat/KM [mM/s] (protein specific)
751538
Ranjan
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Thermothelomyces thermophilus
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137-147
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743202
Matsuda
Preferential expression of a ...
Pyropia yezoensis, Pyropia yezoensis TU-1
Mar. Biotechnol.
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199-210
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742111
Kaneko
cDNA cloning and characteriza ...
Laurencia nipponica
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78
1310-1319
2014
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726122
Baharum
Molecular cloning, homology mo ...
Gracilaria changii
Phytochemistry
92
49-59
2013
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724866
Arnoldsson
Formation of environmentally r ...
Corallina officinalis
Environ. Sci. Technol.
46
7239-7244
2012
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726511
Wischang
-
Bromination of phenols in brom ...
Ascophyllum nodosum
Tetrahedron
68
9456-9463
2012
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711546
Zhang
Efficient purification with hi ...
Corallina officinalis
Biotechnol. Lett.
33
545-548
2011
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724731
Sandy
Vanadium bromoperoxidase from ...
Delisea pulchra
Chem. Commun. (Camb. )
47
12086-12088
2011
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725111
Wischang
-
Vanadate(v)-dependent bromoper ...
Ascophyllum nodosum
Green Chem.
13
102-108
2011
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725778
Johnson
Characterization of a function ...
Synechococcus sp., Synechococcus sp. CC9311, Synechococcus sp. WH8020
J. Phycol.
47
792-801
2011
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699389
Littlechild
Vanadium containing bromoperox ...
Corallina pilulifera
J. Inorg. Biochem.
103
617-621
2009
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699774
Geethalakshmi
51V NMR chemical shifts calcul ...
Ascophyllum nodosum
J. Phys. Chem. B
113
4456-4465
2009
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701152
Hartung
-
On the reactivity of bromopero ...
Ascophyllum nodosum
Pure Appl. Chem.
81
1251-1264
2009
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711201
Chen
Morphing activity between stru ...
Kitasatospora aureofaciens
Biochemistry
48
11496-11504
2009
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699768
Waller
51V NMR chemical shifts from q ...
Ascophyllum nodosum
J. Phys. Chem. B
112
5813-5823
2008
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700668
Hartung
Bromoperoxidase activity and v ...
Ascophyllum nodosum
Phytochemistry
69
2826-2830
2008
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676980
Coupe
The dodecameric vanadium-depen ...
Corallina officinalis
Protein Expr. Purif.
52
265-272
2007
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689414
Kamenarska
A vanadium-dependent bromopero ...
Kappaphycus alvarezii, Kappaphycus alvarezii Doty
Phytochemistry
68
1358-1366
2007
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671523
Hofrichter
Heme-thiolate haloperoxidases: ...
Agrocybe aegerita
Appl. Microbiol. Biotechnol.
71
276-288
2006
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Reactivity of recombinant and ...
Corallina officinalis
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676361
Ohshiro
Expression of the vanadium-dep ...
Corallina pilulifera
Phytochemistry
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Rorrer
Bromoperoxidase activity in mi ...
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676357
Almeida
Vanadium haloperoxidases from ...
Laminaria hyperborea, Saccharina latissima
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Ohsawa
Physiological function of brom ...
Corallina pilulifera
Phytochemistry
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Rehder
Water and bromide in the activ ...
Ascophyllum nodosum
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Weyand
X-ray structure determination ...
Ascophyllum nodosum
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1999
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671036
Brindley
Preliminary X-ray analysis of ...
Corallina officinalis
Acta Crystallogr. Sect. D
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1998
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673214
Butler
Vanadium haloperoxidases ...
Ascophyllum nodosum, Corallina officinalis
Curr. Opin. Chem. Biol.
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279-285
1998
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675244
Hara
Isolation and characterization ...
Ecklonia stolonifera
J. Inorg. Biochem.
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Facey
Cloning, sequencing and disrup ...
Streptomyces venezuelae
Microbiology
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726562
Weyand
Crystallization and preliminar ...
Ascophyllum nodosum
Acta Crystallogr. Sect. D
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864-865
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672312
Pelletier
A catalytic triad is required ...
Pseudomonas fluorescens
Biochim. Biophys. Acta
1250
149-157
1995
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Pelletier
Cloning of a second non-haem b ...
Kitasatospora aureofaciens
Microbiology
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671907
Itoh
Oxidation of aniline to nitrob ...
Corallina pilulifera, Pseudomonas putida
Biochem. Mol. Biol. Int.
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785-791
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Sheffield
Thermostability of the vanadiu ...
Corallina officinalis
Biochem. Soc. Trans.
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445S
1993
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671929
Sheffield
Bromoperoxidase of the macroal ...
Corallina officinalis
Biochem. Soc. Trans.
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284S
1992
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Pfeifer
Molecular cloning and sequenci ...
Kitasatospora aureofaciens
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Weng
Purification, characterization ...
Kitasatospora aureofaciens
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1991
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671956
Soedjak
Characterization of vanadium b ...
Fucus distichus, Macrocystis pyrifera
Biochemistry
29
7974-7981
1990
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2
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672310
Tromp
Some structural aspects of van ...
Ascophyllum nodosum
Biochim. Biophys. Acta
1040
192-198
1990
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671955
Arber
Vanadium K-edge X-ray absorpti ...
Ascophyllum nodosum
Biochemistry
28
7968-7973
1989
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675172
Knoch
Purification, properties and i ...
Streptomyces venezuelae
J. Gen. Microbiol.
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672433
Krenn
Purification and some characte ...
Kitasatospora aureofaciens
Biochim. Biophys. Acta
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255-260
1988
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673427
Itoh
Substrate specificity, regiosp ...
Corallina pilulifera
Eur. J. Biochem.
172
477-484
1988
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Zeiner
Purification and partial chara ...
Streptomyces griseus, Streptomyces griseus Tu6
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134
3141-3149
1988
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6
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