adhb
Species | Cat.# | Product name | Source (Host) | Tag | Protein Length | Price |
---|---|---|---|---|---|---|
Bacillus subtilis | ADHB-1859B | Recombinant Bacillus subtilis ADHB protein, His-tagged | E. coli or Yeast | His |
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Q&As (10)
Ask a questionThe ADHB gene exhibits genetic variations or polymorphisms, and their impact on ADHB expression or function provides insights into individual differences and disease susceptibility.
ADHB exhibits a tissue-specific expression pattern and undergoes regulation under various physiological conditions, indicating its functional relevance in specific tissues or contexts.
ADHB represents a potential target for pharmacological modulation, opening up opportunities for therapeutic interventions in relevant diseases or conditions.
ADHB has the potential to form complexes with other proteins or engage in protein-protein interactions, suggesting its involvement in complex cellular processes.
Investigating the three-dimensional structure of ADHB provides insights into its catalytic mechanism, protein interactions, and potential sites for targeted interventions.
Post-translational modifications on ADHB can influence its stability, enzymatic activity, or subcellular localization, highlighting their regulatory role in its function.
ADHB may play a role in disease pathogenesis, and its altered expression or activity could serve as a diagnostic or prognostic marker for certain conditions.
ADHB is involved in metabolic pathways and possesses specific enzymatic activities, which contribute to the transformation of specific substrates into products.
The expression and activity of ADHB are regulated by signaling pathways and specific mechanisms, uncovering the intricate control of its function in cellular metabolism.
Understanding the physiological substrates and products of ADHB sheds light on its specific metabolic roles and their contribution to cellular homeostasis.
Customer Reviews (2)
Write a reviewProvides accurate and precise quantification of protein-protein interactions in co-immunoprecipitation assays.
Exhibits remarkable stability and activity in high salt conditions in salt tolerance assays.
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