Date published: 2025-11-28

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OR2G2 Activators

OR2G2 activators represent a distinct class of chemical compounds that have attracted attention in the field of molecular biology and sensory perception. These compounds are tailored to modulate the activity of OR2G2, a protein-coding gene that is part of the larger family of olfactory receptor (OR) genes. OR2G2, which stands for Olfactory Receptor Family 2 Subfamily G Member 2, is primarily expressed in the olfactory sensory neurons of the nasal epithelium and plays a pivotal role in the detection and recognition of specific odorant molecules. OR2G2 activators operate by targeting specific regulatory elements within the OR2G2 gene, typically situated in promoter or enhancer regions, with the primary objective of enhancing its transcription and subsequent translation into functional olfactory receptors.

The mechanisms through which OR2G2 activators exert their effects may vary, but their central purpose is to act as molecular switches, amplifying the activity of OR2G2. Researchers are continually exploring the potential applications and implications of OR2G2 activation, aiming to deepen our understanding of how this gene contributes to the sense of smell and olfactory perception. This class of compounds holds promise for advancing our knowledge of sensory perception, specifically within the context of olfactory receptors, offering insights into the intricate mechanisms that govern our ability to detect and discriminate various odorant molecules and the significance of OR2G2 in the complex world of olfaction. OR2G2 activators serve as valuable tools in the ongoing exploration of molecular biology, providing opportunities to uncover the complex roles that OR2G2 plays in sensory functions and its potential role in shaping our olfactory experiences.

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Zinc

7440-66-6sc-213177
100 g
$47.00
(0)

Zinc ions can modulate metal-responsive transcription factors, potentially affecting gene expression.

Caffeine

58-08-2sc-202514
sc-202514A
sc-202514B
sc-202514C
sc-202514D
5 g
100 g
250 g
1 kg
5 kg
$32.00
$66.00
$95.00
$188.00
$760.00
13
(1)

Caffeine influences cyclic AMP levels and could modulate the activity of cAMP-responsive transcription factors.

Sodium Fluoride

7681-49-4sc-24988A
sc-24988
sc-24988B
5 g
100 g
500 g
$39.00
$45.00
$98.00
26
(4)

Sodium fluoride can activate signal transduction pathways, leading to changes in gene expression profiles.

Mifepristone

84371-65-3sc-203134
100 mg
$60.00
17
(1)

Mifepristone is a glucocorticoid receptor antagonist that can modulate transcription factor activity.

all-trans Retinal

116-31-4sc-210778A
sc-210778
250 mg
1 g
$126.00
$372.00
7
(2)

All-trans retinal can act as a ligand for retinoid receptors, influencing gene transcription.

Camptothecin

7689-03-4sc-200871
sc-200871A
sc-200871B
50 mg
250 mg
100 mg
$57.00
$182.00
$92.00
21
(2)

Camptothecin inhibits topoisomerase I, affecting DNA topology and potentially gene expression.

Nicotinamide

98-92-0sc-208096
sc-208096A
sc-208096B
sc-208096C
100 g
250 g
1 kg
5 kg
$43.00
$65.00
$200.00
$815.00
6
(1)

Nicotinamide is a form of vitamin B3 that can impact sirtuin activity and gene regulation.

Pioglitazone

111025-46-8sc-202289
sc-202289A
1 mg
5 mg
$54.00
$123.00
13
(1)

Pioglitazone activates peroxisome proliferator-activated receptor gamma (PPARγ), influencing gene expression.

Thapsigargin

67526-95-8sc-24017
sc-24017A
1 mg
5 mg
$94.00
$349.00
114
(2)

Thapsigargin disrupts calcium homeostasis, which can induce expression of genes responsive to calcium changes.

Tetracycline

60-54-8sc-205858
sc-205858A
sc-205858B
sc-205858C
sc-205858D
10 g
25 g
100 g
500 g
1 kg
$62.00
$92.00
$265.00
$409.00
$622.00
6
(1)

Tetracycline can disrupt mitochondrial function, potentially inducing a cellular stress response affecting gene expression.