Date published: 2025-10-19

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ETV3L Activators

ETV3L Activators represent a class of chemical compounds that have been identified for their capacity to modulate the activity of the ETV3L gene. ETV3L, also known as ETS Variant 3-Like, is a gene that encodes a protein whose functions are still emerging within the field of molecular biology. Activators of ETV3L are molecules that possess the ability to either enhance the expression of the ETV3L gene or potentiate its biological activity within a cell. These compounds serve as valuable tools for researchers seeking to unravel the biological significance of ETV3L and its potential involvement in various cellular functions.

The specific mechanisms by which ETV3L activators exert their effects are currently a subject of active scientific investigation. These molecules may act at the transcriptional or post-transcriptional level, potentially influencing the production of ETV3L protein or modifying its interactions with other cellular components. By manipulating ETV3L activity, researchers aim to decipher its biological roles, which may encompass participation in cellular signaling pathways, molecular pathways, or cellular responses to internal or external cues. Investigating ETV3L activators offers the potential to shed light on the molecular pathways and cellular processes governed by this gene, thereby advancing our understanding of its significance in normal cellular physiology and potentially leading to novel insights in fields such as molecular biology and genetics.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

5-Aza-2′-Deoxycytidine

2353-33-5sc-202424
sc-202424A
sc-202424B
25 mg
100 mg
250 mg
$214.00
$316.00
$418.00
7
(1)

It is an inhibitor of DNA methyltransferases, potentially leading to demethylation and activation of some silenced genes.

Valproic Acid

99-66-1sc-213144
10 g
$85.00
9
(1)

Valproic acid is an HDAC inhibitor that may increase histone acetylation, thereby enhancing gene expression.

Forskolin

66575-29-9sc-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
(3)

Forskolin activates adenylyl cyclase, increasing cAMP levels and potentially upregulating genes through the cAMP response element-binding pathway.

Sodium Butyrate

156-54-7sc-202341
sc-202341B
sc-202341A
sc-202341C
250 mg
5 g
25 g
500 g
$30.00
$46.00
$82.00
$218.00
19
(3)

Sodium butyrate is another HDAC inhibitor that can lead to hyperacetylation of histones, affecting gene transcription.

Retinoic Acid, all trans

302-79-4sc-200898
sc-200898A
sc-200898B
sc-200898C
500 mg
5 g
10 g
100 g
$65.00
$319.00
$575.00
$998.00
28
(1)

Retinoic acid acts on retinoic acid receptors, which can modulate gene expression through retinoic acid response elements in DNA.

Genistein

446-72-0sc-3515
sc-3515A
sc-3515B
sc-3515C
sc-3515D
sc-3515E
sc-3515F
100 mg
500 mg
1 g
5 g
10 g
25 g
100 g
$26.00
$92.00
$120.00
$310.00
$500.00
$908.00
$1821.00
46
(1)

Genistein is a tyrosine kinase inhibitor and may also function as an epigenetic modulator, potentially altering gene expression.

D,L-Sulforaphane

4478-93-7sc-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
(1)

Sulforaphane may affect gene expression via its influence on epigenetic modulation and transcription factor activity.

Curcumin

458-37-7sc-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
(1)

Curcumin can modulate various transcription factors and signaling pathways, potentially impacting gene expression.

Resveratrol

501-36-0sc-200808
sc-200808A
sc-200808B
100 mg
500 mg
5 g
$60.00
$185.00
$365.00
64
(2)

Resveratrol has been shown to affect various signal transduction pathways and could potentially modify gene expression profiles.

Sodium arsenite, 0.1N Standardized Solution

7784-46-5sc-301816
500 ml
$130.00
4
(0)

Sodium arsenite can influence gene expression through stress response pathways and histone modification changes.