Mucin 8 activators are a specialized group of chemical compounds designed to augment the activity of Mucin 8, a protein known to play a significant role in mucosal protection and cellular signaling within epithelial tissues. The development of these activators involves an intricate process that begins with a detailed understanding of the structure and function of Mucin 8. Researchers utilize advanced computational modeling techniques to identify potential binding sites on the Mucin 8 molecule where activators can interact to enhance its activity. This in silico approach allows for the prediction of molecular interactions and the identification of chemical structures that are most likely to increase the activity of Mucin 8 effectively. Following these predictions, synthetic chemistry techniques are employed to create the molecules that have been identified as potential activators. These molecules are then subjected to a series of modifications aimed at optimizing their efficacy and specificity for Mucin 8, ensuring that they can effectively modulate the protein's function.
The experimental validation of Mucin 8 activators is a critical component of their development. Structural biology techniques such as X-ray crystallography and NMR spectroscopy are utilized to elucidate the precise manner in which these activators interact with Mucin 8 at the molecular level. These insights are essential for refining the design of the activators to improve their interaction with the protein, thereby enhancing their capacity to stimulate Mucin 8 activity. Biochemical assays are conducted to quantitatively measure the increase in Mucin 8 activity in the presence of these activators, providing a clear assessment of their effectiveness. These studies ensure that the activators can reach their target protein within biological systems and exert their intended effect. Through a comprehensive process that integrates computational design, chemical synthesis, structural analysis, and functional testing, the development of Mucin 8 activators aims to achieve precise modulation of Mucin 8 activity, leveraging the synergy between chemistry and biology to enhance the protein's natural functions.
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
Retinoic Acid, all trans | 302-79-4 | sc-200898 sc-200898A sc-200898B sc-200898C | 500 mg 5 g 10 g 100 g | $65.00 $319.00 $575.00 $998.00 | 28 | |
Retinoic acid, through retinoic acid receptors, may modulate gene expression including genes like MUC8. | ||||||
Cholecalciferol | 67-97-0 | sc-205630 sc-205630A sc-205630B | 1 g 5 g 10 g | $70.00 $160.00 $290.00 | 2 | |
By binding to the vitamin D receptor, Vitamin D3 could influence the transcription of genes, possibly including MUC8. | ||||||
Butyric acid | 107-92-6 | sc-214640 sc-214640A | 1 kg 10 kg | $63.00 $174.00 | ||
Butyrate, as a histone deacetylase inhibitor, may increase histone acetylation and thus promote MUC8 gene expression. | ||||||
(−)-Epigallocatechin Gallate | 989-51-5 | sc-200802 sc-200802A sc-200802B sc-200802C sc-200802D sc-200802E | 10 mg 50 mg 100 mg 500 mg 1 g 10 g | $42.00 $72.00 $124.00 $238.00 $520.00 $1234.00 | 11 | |
EGCG could affect epigenetic mechanisms, potentially modifying the expression pattern of MUC8. | ||||||
Forskolin | 66575-29-9 | sc-3562 sc-3562A sc-3562B sc-3562C sc-3562D | 5 mg 50 mg 1 g 2 g 5 g | $76.00 $150.00 $725.00 $1385.00 $2050.00 | 73 | |
Forskolin raises cAMP levels, which may activate transcription factors related to MUC8 expression. | ||||||
D,L-Sulforaphane | 4478-93-7 | sc-207495A sc-207495B sc-207495C sc-207495 sc-207495E sc-207495D | 5 mg 10 mg 25 mg 1 g 10 g 250 mg | $150.00 $286.00 $479.00 $1299.00 $8299.00 $915.00 | 22 | |
Sulforaphane might influence MUC8 expression through its role in histone modification and transcription factor activation. | ||||||
Curcumin | 458-37-7 | sc-200509 sc-200509A sc-200509B sc-200509C sc-200509D sc-200509F sc-200509E | 1 g 5 g 25 g 100 g 250 g 1 kg 2.5 kg | $36.00 $68.00 $107.00 $214.00 $234.00 $862.00 $1968.00 | 47 | |
Curcumin can modulate transcription factors and signaling pathways, potentially influencing MUC8 expression. | ||||||
Resveratrol | 501-36-0 | sc-200808 sc-200808A sc-200808B | 100 mg 500 mg 5 g | $60.00 $185.00 $365.00 | 64 | |
Resveratrol interacts with various signaling molecules that could lead to changes in MUC8 gene transcription. | ||||||
Adenosine 3′,5′-cyclic monophosphate | 60-92-4 | sc-217584 sc-217584A sc-217584B sc-217584C sc-217584D sc-217584E | 100 mg 250 mg 5 g 10 g 25 g 50 g | $114.00 $175.00 $260.00 $362.00 $617.00 $1127.00 | ||
Dibutyryl-cAMP, a cAMP analog, may mimic cAMP's effects on protein kinase A, affecting MUC8 transcription. | ||||||
5-Aza-2′-Deoxycytidine | 2353-33-5 | sc-202424 sc-202424A sc-202424B | 25 mg 100 mg 250 mg | $214.00 $316.00 $418.00 | 7 | |
This compound may demethylate DNA, potentially leading to the upregulation of MUC8 expression. | ||||||