Aldehyde oxidase 1 from Oryctolagus cuniculus (rabbit)

Enzyme Description

Extremophile
No
EC Number

Sequence

Length: 1334 amino acids
MEPAPELLFYVNGRKVVEKQVDPETMLLPYLRKKLRLTGTKYGCGGGGCGACTVMISRYNRVTKKIRHYPVNACLTPICSLYGAAVTTVEGIGSTTTRLHPVQERIAKFHGTQCGFCTPGMVMSMYALLRNHPEPTLDQLADALGGNLCRCTGYRPIIEAYKTFCKTSDCCQNKENGFCCLDQGINGLPEVEEENQTRPNLFSEEEYLPLDPTQELIFPPELMTMAEKQPQRTRVFSGERMMWISPVTLKALLEAKSTYPQAPVVMGNTSVGPGVKFKGIFHPVIISPDSIEELNVVSHTHSGLTLGAGLSLAQVKDILADVVQKVPEENAQTYRALLKHLGTLAGSQIRNMASLGGHIISRHLDSDLNPLLAVGNCTLNVLSKEGERQIPLDEQFLSRCPEADLKPQEILASVHIPYSRKWEFVLAFRQAQRKQNALAIVNSGMRVFFGEGDGIIRELAISYGGVGPTIICAKNSCQKLIGRSWNEEMLDTACRLILDEVSLPGSAPGGKVEFKRTLIISFLFKFYLEVSQILKRMAPGLSPHLADKYESALQDLHARYSWSTLKDQDVDARQLSQDPIGHPVMHLSGVKHATGEAIYLDDMPAVDQELFMAFVTSPRAHAKIVSTDLLEALSLPGVVDIVTAEHLQDGNTFYTEKLLAADEVLCVGQLVCAVIAESEVQAKQAAKQVKIVYEDLEPVILSIEEAIEQKSFFEPERKLEYGNVDEAFKVVDQILEGEIHMGGQEHFYMETQSVLVVPKGEDQEMDVYASTQFPKYIQDMVAAVLKLPVNKVMCHVKRVGGAFGGKVFKASIMAAIAAFAANKHGRAVRCILERGEDMLITGGRHPYLGKYKAGFMNDGRIVALDVEHYSNGGCSLDESLLVIEMGLLKMENAYKFPNLRCRGWACRTNLPSNTAFRGFGFPQAGLITECCITEVAAKCGLSPEKVRAINFYKEIDQTPYKQEINAKNLTQCWNECLAKSSYFQRKVAVEKFNAENYWKQRGLAIIPFKYPRGLGSVAYGQAAALVHVYLDGSVLVTHGGIEMGQGVHTKMIQVVSRELKMPMSNVHLRGTSTETVPNTNASGGSVVADLNGLAVKDACQTLLKRLEPIINKNPQGTWKEWAQAAFDKSISLSATGYFRGYDSNIDWDKGEGHPFEYFVYGAACSEVEIDCLTGDHKTIRTDIVMDVGYSINPALDIGQVEGAFIQGMGLYTIEELHYSPQGILYSRGPNQYKIPAICDIPAELNVTFLPPSEKSNTLYSSKGLGESGVFMGCSVFFAIREAVCAARQARGLSAPWKLSSPLTPEKIRMACEDKFTKMIPRDKPGSYVPWNVPV
Mohammad-Reza Rashidi et al. (2013) β€” Aldehyde Oxidase Activity and Stability in Water-Miscible Organic Solvents
Applied Biochemistry and Biotechnology  Β· doi:10.1007/s12010-012-0036-7 β†—  Β· Activity - Classical Activity - Michaelis-Menten Stability - C50 Stability - Incubation
243 measurements
Database ID
UniProt: P80456 β†—
Sequence Annotation
Inferred - from protein name
Protein Source
Purified, eukaryote Oryctolagus cuniculus (rabbit)

Experimental Data (243 measurements)

243 measurements β€” page 11 of 13
Property Assay Solvent Solvent Volume Aqueous Reference Measured Value Units Solution pH Temperature Substrate(s) Product(s) Cofactor(s) Shaking Comments
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Tetrahydrofuran (THF) β€” β€” 0.5 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 45Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Dimethylformamide (DMF) β€” β€” 20.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 25Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Dimethylformamide (DMF) β€” β€” 13.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 35Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Dimethylformamide (DMF) β€” β€” 12.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 45Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent 1-Propanol β€” β€” 2.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 25Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent 1-Propanol β€” β€” 2.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 35Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent 1-Propanol β€” β€” 1.5 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 45Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Isopropanol β€” β€” 5.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 25Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Isopropanol β€” β€” 5.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 35Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Isopropanol β€” β€” 4.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 45Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent 1,4-Dioxane β€” β€” 10.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 25Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent 1,4-Dioxane β€” β€” 9.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 35Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent 1,4-Dioxane β€” β€” 8.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 45Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Pyridine β€” β€” 0.5 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 25Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Pyridine β€” β€” 0.5 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 35Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Pyridine β€” β€” 0.5 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 45Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Methanol β€” β€” 0.5 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 25Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Methanol β€” β€” 0.5 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 35Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Methanol β€” β€” 1.5 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 45Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
Stability - C50 Volume fraction of organic solvent volume for which half of the activity is lost, as measured by absorbance spectrophotometry (phenathridinone absorbance measurement, 322 nm) in the presence of organic solvent Acetonitrile β€” β€” 5.0 % (v/v) 67 mM Sorenson phosphate buffer, 0.1 MM EDTA 7.4 25Β°C 20 Β΅M Phenanthridine Phenanthridinone β€” β€” Not applicable control (in % (v/v))
1 … 10 11 12 13

Visualization : Activity β€” Classical

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Visualization : Activity β€” Michaelis-Menten

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Visualization : Stability β€” Incubation

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Visualization : Stability β€” C50

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Structure

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