ADH8A
Species | Cat.# | Product name | Source (Host) | Tag | Protein Length | Price |
---|---|---|---|---|---|---|
Zebrafish | ADH8A-266Z | Recombinant Zebrafish ADH8A | Mammalian Cell | His |
- Involved Pathway
- Protein Function
- Interacting Protein
ADH8A involved in several pathways and played different roles in them. We selected most pathways ADH8A participated on our site, such as Abacavir metabolism, Abacavir transport and metabolism, Biological oxidations, which may be useful for your reference. Also, other proteins which involved in the same pathway with ADH8A were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.
Pathway Name | Pathway Related Protein |
---|---|
Abacavir metabolism | ADH8B;ADAL;ADH8A;ADH1A |
Abacavir transport and metabolism | ADH1A;ADH8B;ADAL;ADH8A |
Biological oxidations | ADH8B;SLC26A2;CYP27B1;CYP1A2;GLYAT;ADH8A;CYP4F22;CYP4T8;Sult2a6 |
Ethanol oxidation | ADH1C;ADH5;ADH6;ADH8A;ADH4;ADH7;ADH8B;ADH1B;ADH1A |
Metabolism | CPT2;GCHFR;COX6B1;SLC25A15B;NUDT16;PNPLA8;PTPMT1;CDS1;SURF1 |
Phase 1 - Functionalization of compounds | CYP2C18;CYP2W1;CYP2F1;CES1;ADH8A;CYP2K17;CYP2N13;CYP2AD2;CYP2Y3 |
RA biosynthesis pathway | ALDH8A1;SDR16C5;RDH14A;RDH7;CRABP1A;RDH14;CRABP1B;DHRS4;DHRS9 |
Signal Transduction | AKR1C21;HCRT;BCL9;PTH2;TULP3;GPR37L1;OPHN1;ARHGAP10;GPR31B |
ADH8A has several biochemical functions, for example, alcohol dehydrogenase (NAD) activity, metal ion binding, oxidoreductase activity. Some of the functions are cooperated with other proteins, some of the functions could acted by ADH8A itself. We selected most functions ADH8A had, and list some proteins which have the same functions with ADH8A. You can find most of the proteins on our site.
Function | Related Protein |
---|---|
alcohol dehydrogenase (NAD) activity | ADH4;ADH1C;ADH5;ADH1A;ADH6;DHRS9;ADH7;ADH8A;ADH1 |
metal ion binding | ZHX3;GNPTAB;AARSD1;JADE1;DPEP3;MGAT4B;AGMAT;ARAP2;AGFG2 |
oxidoreductase activity | RSAD1;HSDL1;CYP24A1;PCYOX1L;ALDH2.1;ADH8A;CYP2E1;PPM1NA;HSD3B6 |
zinc ion binding | ZCCHC4;MSRB3;MTA2;WT1;ADAM23;UQCRC1;RXRAA;SORD;SPG7 |
ADH8A has direct interactions with proteins and molecules. Those interactions were detected by several methods such as yeast two hybrid, co-IP, pull-down and so on. We selected proteins and molecules interacted with ADH8A here. Most of them are supplied by our site. Hope this information will be useful for your research of ADH8A.
- Q&As
- Reviews
Q&As (10)
Ask a questionADH8A expression and activity are regulated by specific regulators and signaling pathways, providing insights into the control of its expression.
Genetic variations or polymorphisms in the ADH8A gene may influence alcohol metabolism and susceptibility to alcohol-related disorders, highlighting the genetic component in its function.
ADH8A can interact with specific partners or cofactors that modulate its activity, and studying the underlying molecular mechanisms provides insights into its regulation.
Exploring the consequences of ADH8A deficiency or overexpression provides insights into its role in alcohol metabolism and its impact on physiological processes related to alcohol-related disorders.
ADH8A expression and activity can be influenced by alcohol exposure, and understanding the molecular mechanisms involved enhances our understanding of alcohol-related effects.
ADH8A may have the ability to metabolize other endogenous compounds or xenobiotics, suggesting broader physiological implications beyond alcohol metabolism.
ADH8A exhibits a specific tissue expression pattern, distinguishing it from other ADH isoforms and suggesting its unique role in those tissues.
Modulating ADH8A activity through pharmacological agents or environmental factors may have potential therapeutic implications, highlighting its targetability.
Investigating the three-dimensional structure of ADH8A provides valuable information on its catalytic activity and binding properties, aiding in understanding its function.
The enzymatic properties and substrate specificity of ADH8A contribute to its function in alcohol metabolism, enabling efficient conversion of specific alcohol substrates.
Customer Reviews (2)
Write a reviewShows exceptional selectivity in targeting specific cellular compartments in subcellular localization studies.
Displays remarkable catalytic efficiency in glycosylation reactions.
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