CRYBG3 Activators represent a focused area within chemical research, targeting the CRYBG3 protein, which is part of the Beta-gamma crystallin superfamily. This family is known for its structural proteins that play significant roles in the transparency and refractive properties of ocular lenses. However, CRYBG3 extends beyond traditional crystallin functions, implicating broader cellular processes and molecular pathways. Activators of CRYBG3 are specialized compounds designed to modulate the activity of this protein, thereby influencing its role in cellular mechanisms. The development of these activators involves intricate chemical synthesis and high-throughput screening to ensure specificity and efficacy in interacting with the CRYBG3 protein. These compounds are characterized by their ability to bind to specific sites on the CRYBG3 protein, inducing conformational changes that affect the protein's function. The chemical structure of CRYBG3 Activators is meticulously engineered to optimize their interaction with the protein, enhancing their ability to modulate its activity within the cellular context.
The study of CRYBG3 Activators encompasses advanced research methodologies, including computational modeling, structural biology, and biophysical assays, to understand the precise interaction between these compounds and the CRYBG3 protein. Researchers utilize techniques such as X-ray crystallography, molecular docking simulations, and fluorescence spectroscopy to elucidate the binding mechanisms and the resultant effects on protein activity. This research is pivotal in deciphering the complex roles of CRYBG3 in cellular environments, contributing to a deeper understanding of protein-ligand interactions and protein functionality within biological systems. Through the study of CRYBG3 Activators, scientists aim to unravel the nuanced layers of protein regulation and the implications of modulating protein activity, offering insights into the fundamental processes that underpin cellular biology and protein science.
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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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 regulates gene expression through retinoic acid receptors and may affect the expression of genes involved in cellular differentiation. | ||||||
(−)-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 | |
As a polyphenol, epigallocatechin gallate can influence gene expression by modulating signal transduction pathways and transcription factors. | ||||||
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 activates adenylate cyclase, increasing cAMP levels and potentially influencing genes regulated by cAMP response element-binding protein (CREB). | ||||||
5-Azacytidine | 320-67-2 | sc-221003 | 500 mg | $280.00 | 4 | |
A cytidine analog that inhibits DNA methyltransferases, 5-Azacytidine may lead to the demethylation and activation of silenced genes. | ||||||
Trichostatin A | 58880-19-6 | sc-3511 sc-3511A sc-3511B sc-3511C sc-3511D | 1 mg 5 mg 10 mg 25 mg 50 mg | $149.00 $470.00 $620.00 $1199.00 $2090.00 | 33 | |
Trichostatin A is a histone deacetylase inhibitor that can alter chromatin structure and increase the expression of certain genes. | ||||||
Sodium Butyrate | 156-54-7 | sc-202341 sc-202341B sc-202341A sc-202341C | 250 mg 5 g 25 g 500 g | $30.00 $46.00 $82.00 $218.00 | 19 | |
Sodium butyrate inhibits histone deacetylases, potentially leading to a more relaxed chromatin state and activation of gene 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 is a stilbenoid that modulates several signaling pathways and may influence the expression of various genes. | ||||||
Dexamethasone | 50-02-2 | sc-29059 sc-29059B sc-29059A | 100 mg 1 g 5 g | $76.00 $82.00 $367.00 | 36 | |
Dexamethasone is a glucocorticoid that can regulate gene expression by binding to glucocorticoid response elements in the DNA. | ||||||
PMA | 16561-29-8 | sc-3576 sc-3576A sc-3576B sc-3576C sc-3576D | 1 mg 5 mg 10 mg 25 mg 100 mg | $40.00 $129.00 $210.00 $490.00 $929.00 | 119 | |
PMA activates protein kinase C and can lead to diverse changes in gene expression patterns. | ||||||
Lithium | 7439-93-2 | sc-252954 | 50 g | $214.00 | ||
Lithium influences glycogen synthase kinase-3 (GSK-3) activity and downstream signaling pathways that can affect gene expression. |