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Literature summary extracted from

  • Alam, M.; Srivastava, A.; Dutta, A.; Sau, A.K.
    Biochemical and biophysical studies of Helicobacter pylori arginine decarboxylase, an enzyme important for acid adaptation in host (2018), IUBMB Life, 70, 658-669 .
    View publication on PubMed

Application

EC Number Application Comment Organism
4.1.1.19 drug development the enzyme is a target for drug design Helicobacter pylori

Cloned(Commentary)

EC Number Cloned (Comment) Organism
4.1.1.19 gene ADC, sequence comparisons, recombinant expression of His-tagged enzyme in Escherichia coli strain BL21 (DE3) Helicobacter pylori

Protein Variants

EC Number Protein Variants Comment Organism
4.1.1.19 C487A site-directed mutagenesis, the mutant shows less than 10% of wild-type activity, but only slightly reduced temperature stability compared to wild-type Helicobacter pylori

Inhibitors

EC Number Inhibitors Comment Organism Structure
4.1.1.19 alpha-difluoromethylarginine DFMA, competitive inhibition Helicobacter pylori

KM Value [mM]

EC Number KM Value [mM] KM Value Maximum [mM] Substrate Comment Organism Structure
4.1.1.19 additional information
-
additional information steady-state kinetics Helicobacter pylori
4.1.1.19 3.4
-
L-arginine pH 7.4, 37°C Helicobacter pylori

Localization

EC Number Localization Comment Organism GeneOntology No. Textmining
4.1.1.19 cytosol
-
Helicobacter pylori 5829
-

Metals/Ions

EC Number Metals/Ions Comment Organism Structure
4.1.1.19 Mg2+ required for catalysis, divalent metal ions are essential for activity, the metal binding residues are conserved Helicobacter pylori

Molecular Weight [Da]

EC Number Molecular Weight [Da] Molecular Weight Maximum [Da] Comment Organism
4.1.1.19 407000
-
purified recombinant His-tagged enzyme, gel filtration Helicobacter pylori

Natural Substrates/ Products (Substrates)

EC Number Natural Substrates Organism Comment (Nat. Sub.) Natural Products Comment (Nat. Pro.) Rev. Reac.
4.1.1.19 L-arginine Helicobacter pylori
-
agmatine + CO2
-
?
4.1.1.19 L-arginine Helicobacter pylori ATCC 700392 / 26695
-
agmatine + CO2
-
?

Organism

EC Number Organism UniProt Comment Textmining
4.1.1.19 Helicobacter pylori O25176 i.e. Campylobacter pylori
-
4.1.1.19 Helicobacter pylori ATCC 700392 / 26695 O25176 i.e. Campylobacter pylori
-

Purification (Commentary)

EC Number Purification (Comment) Organism
4.1.1.19 recombinant His-tagged enzyme from Escherichia coli strain BL21 (DE3) by nickel affinity chromatography Helicobacter pylori

Substrates and Products (Substrate)

EC Number Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
4.1.1.19 difluoromethylornithine over 90% activity compared to L-arginine Helicobacter pylori 1-(4-amino-5,5-difluoropentyl)guanidine + CO2
-
?
4.1.1.19 difluoromethylornithine over 90% activity compared to L-arginine Helicobacter pylori ATCC 700392 / 26695 1-(4-amino-5,5-difluoropentyl)guanidine + CO2
-
?
4.1.1.19 L-arginine
-
Helicobacter pylori agmatine + CO2
-
?
4.1.1.19 L-arginine preferred substrate Helicobacter pylori agmatine + CO2
-
?
4.1.1.19 L-arginine
-
Helicobacter pylori ATCC 700392 / 26695 agmatine + CO2
-
?
4.1.1.19 L-arginine preferred substrate Helicobacter pylori ATCC 700392 / 26695 agmatine + CO2
-
?
4.1.1.19 L-ornithine about 90% activity compared to L-arginine Helicobacter pylori putrescine + CO2
-
?
4.1.1.19 L-ornithine about 90% activity compared to L-arginine Helicobacter pylori ATCC 700392 / 26695 putrescine + CO2
-
?
4.1.1.19 N-omega-nitro-L-arginine methyl ester over 80% activity compared to L-arginine Helicobacter pylori methyl formate + 1-(4-amino-5,5-difluoropentyl)guanidine + CO2
-
?
4.1.1.19 N-omega-nitro-L-arginine methyl ester over 80% activity compared to L-arginine Helicobacter pylori ATCC 700392 / 26695 methyl formate + 1-(4-amino-5,5-difluoropentyl)guanidine + CO2
-
?

Subunits

EC Number Subunits Comment Organism
4.1.1.19 hexamer 6 * 68000, about, recombinant His-tagged enzyme, SDS-PAGE Helicobacter pylori

Synonyms

EC Number Synonyms Comment Organism
4.1.1.19 ADC
-
Helicobacter pylori
4.1.1.19 HP0422
-
Helicobacter pylori

Temperature Optimum [°C]

EC Number Temperature Optimum [°C] Temperature Optimum Maximum [°C] Comment Organism
4.1.1.19 50
-
-
Helicobacter pylori

Temperature Range [°C]

EC Number Temperature Minimum [°C] Temperature Maximum [°C] Comment Organism
4.1.1.19 25 65 activity range, profile overview Helicobacter pylori

Temperature Stability [°C]

EC Number Temperature Stability Minimum [°C] Temperature Stability Maximum [°C] Comment Organism
4.1.1.19 63.4
-
Tm of recombinant enzyme mutant C487A Helicobacter pylori
4.1.1.19 65.8
-
Tm of recombinant wild-type enzyme Helicobacter pylori

Turnover Number [1/s]

EC Number Turnover Number Minimum [1/s] Turnover Number Maximum [1/s] Substrate Comment Organism Structure
4.1.1.19 0.92
-
L-arginine pH 7.4, 37°C Helicobacter pylori

pH Optimum

EC Number pH Optimum Minimum pH Optimum Maximum Comment Organism
4.1.1.19 8.5
-
-
Helicobacter pylori

pH Range

EC Number pH Minimum pH Maximum Comment Organism
4.1.1.19 6.5 11 activity range, profile overview Helicobacter pylori

Cofactor

EC Number Cofactor Comment Organism Structure
4.1.1.19 pyridoxal 5'-phosphate the cofactor binding residues are conserved Helicobacter pylori

Ki Value [mM]

EC Number Ki Value [mM] Ki Value maximum [mM] Inhibitor Comment Organism Structure
4.1.1.19 0.118
-
alpha-difluoromethylarginine pH 7.4, 37°C Helicobacter pylori

General Information

EC Number General Information Comment Organism
4.1.1.19 evolution arginine decarboxylases belong to a family of fold III PLP (pyridoxal 5'-phosphate)-dependent decarboxylases Helicobacter pylori
4.1.1.19 metabolism L-arginine formed by ADC may be transported out from cytosol to extracellular milieu by a transporter protein, AdiC. The metabolism of L-arginine by ADC in Helicobacter pylori might be crucial for its survival in the acidic environment Helicobacter pylori
4.1.1.19 additional information Cys487, a conserved residue located at the active-site, is involved in the catalysis, with a pKa value of about 7.2. The homology model of the protein shows conserved alpha/beta TIM barrel and beta-sandwich domains, which are characteristic features of fold III decarboxylases. Cys487 has a marginal role in the stability. Helicobacter pylori ADC homology modeling and docking studies, overview Helicobacter pylori
4.1.1.19 physiological function the metabolism of L-arginine by ADC in Helicobacter pylori might be crucial for its survival in the acidic environment. To neutralize the pH of the stomach, it transports L-arginine (+1 charge) into the cell and agmatine (+2 charge) out of the cell, which results in the export of 1 proton during each turnover and thus the bacteria can survive in the acidic environment Helicobacter pylori