ADH6 Protein, Human
The ADH6 protein is considered an alcohol dehydrogenase and is critical in cellular metabolism. It catalyzes the NAD-dependent oxidation of primary alcohols to aldehydes and promotes the oxidation of secondary alcohols to ketones. ADH6 Protein, Human is the recombinant human-derived ADH6 protein, expressed by E. coli , with tag free.
- Species: Human
- Source: E. coli
Biological Activity
The ADH6 protein is considered an alcohol dehydrogenase and is critical in cellular metabolism. It catalyzes the NAD-dependent oxidation of primary alcohols to aldehydes and promotes the oxidation of secondary alcohols to ketones. ADH6 Protein, Human is the recombinant human-derived ADH6 protein, expressed by E. coli , with tag free.
ADH6, identified as alcohol dehydrogenase, plays a crucial role in cellular metabolism by catalyzing the NAD-dependent oxidation of primary alcohols to their respective aldehydes and facilitating the oxidation of secondary alcohols to the corresponding ketones. The enzyme's activity is vital in alcohol metabolism, contributing to the conversion of diverse alcohol substrates in cellular processes. Through its catalytic function, ADH6 participates in maintaining cellular redox balance and is integral to the intricate network of alcohol-related metabolic pathways.
Technical Parameters
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Species Human
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Source E. coli
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Tag Tag Free
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Accession
P28332 (M1-W368)
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Gene ID130
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Molecular Construction
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N-term
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ADH6 (M1-W368)
Accession # P28332 -
C-term
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Protein Length
Full Length
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Synonyms
ADH6; Alcohol dehydrogenase 6
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AA Sequence
MSTTGQVIRCKAAILWKPGAPFSIEEVEVAPPKAKEVRIKVVATGLCGTEMKVLGSKHLDLLYPTILGHEGAGIVESIGEGVSTVKPGDKVITLFLPQCGECTSCLNSEGNFCIQFKQSKTQLMSDGTSRFTCKGKSIYHFGNTSTFCEYTVIKEISVAKIDAVAPLEKVCLISCGFSTGFGAAINTAKVTPGSTCAVFGLGGVGLSVVMGCKAAGAARIIGVDVNKEKFKKAQELGATECLNPQDLKKPIQEVLFDMTDAGIDFCFEAIGNLDVLAAALASCNESYGVCVVVGVLPASVQLKISGQLFFSGRSLKGSVFGGWKSRQHIPKLVADYMAEKLNLDPLITHTLNLDKINEAVELMKTGKW
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Purity
≥ 90%, as determined by reducing SDS-PAGE.
Documentation
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)