Date published: 2025-9-10

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AADACL3 Activators

The chemical class termed AADACL3 Activators represents a specific group of compounds identified for their capability to modulate the activity of the AADACL3 gene. AADACL3, or Arylacetamide Deacetylase-Like 3, is a gene that encodes a protein belonging to the arylacetamide deacetylase (AADAC) family. Proteins in this family are known for their involvement in the metabolism of xenobiotics and endogenous compounds. While the precise function of AADACL3 is not fully understood, it is believed to play a role in the detoxification and metabolism of various substrates, including drugs, environmental toxins, and dietary components. Activators of AADACL3 are substances capable of enhancing the expression or function of this gene, potentially influencing downstream cellular pathways and biological responses associated with its activity.

Characterizing compounds as AADACL3 Activators typically involves comprehensive screening processes aimed at evaluating their ability to interact with regulatory elements of the AADACL3 gene or modulate the activity of proteins associated with its expression or function. These activators may operate through diverse mechanisms, such as binding to specific DNA sequences within the gene promoter region, regulating the activity of transcription factors responsible for AADACL3 gene expression, or modulating post-translational modifications of the AADACL3 protein. Understanding the molecular mechanisms underlying AADACL3 activation by these compounds is crucial for elucidating the roles of AADACL3 in cellular physiology and metabolism. Further research into AADACL3 Activators may provide insights into novel cellular pathways involved in xenobiotic metabolism and contribute to a deeper understanding of AADACL3's function in detoxification processes.

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Simvastatin

79902-63-9sc-200829
sc-200829A
sc-200829B
sc-200829C
50 mg
250 mg
1 g
5 g
$30.00
$87.00
$132.00
$434.00
13
(1)

May influence gene expression through feedback mechanisms regulating cholesterol synthesis and metabolism.