Date published: 2026-5-17

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C1orf129 Activators

The chemical class termed C1orf129 Activators refers to a specific category of compounds known for their capability to modulate the activity of the C1orf129 gene. C1orf129, or Chromosome 1 Open Reading Frame 129, represents a gene encoding a protein whose precise function is yet to be fully elucidated. Despite this, computational analyses and bioinformatics suggest potential involvement in various cellular processes, including cell signaling, protein-protein interactions, or intracellular transport. Activators of C1orf129 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 C1orf129 Activators usually involves comprehensive screening processes aimed at evaluating their ability to interact with regulatory elements of the C1orf129 gene or modulate the activity of proteins associated with its expression or function. These activators may operate through diverse mechanisms, including binding to specific DNA sequences within the gene promoter region, regulating the activity of transcription factors responsible for C1orf129 gene expression, or modulating post-translational modifications of the C1orf129 protein. Understanding the molecular mechanisms underlying C1orf129 activation by these compounds is essential for unraveling the biological functions of C1orf129 and its potential roles in cellular physiology. Further research into C1orf129 Activators may provide insights into novel cellular pathways and contribute to a deeper understanding of C1orf129's function in cellular homeostasis and signaling.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

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
$153.00
$292.00
$489.00
$1325.00
$8465.00
$933.00
22
(1)

May activate transcription factors such as Nrf2, leading to changes in gene expression patterns including detoxifying enzymes.

(−)-Epigallocatechin Gallate

989-51-5sc-200802
sc-200802A
sc-200802B
sc-200802C
sc-200802D
sc-200802E
10 mg
50 mg
100 mg
500 mg
1 g
10 g
$43.00
$73.00
$126.00
$243.00
$530.00
$1259.00
11
(1)

A green tea polyphenol that may influence gene expression through epigenetic modifications and modulation of signal transduction pathways.

Quercetin

117-39-5sc-206089
sc-206089A
sc-206089E
sc-206089C
sc-206089D
sc-206089B
100 mg
500 mg
100 g
250 g
1 kg
25 g
$11.00
$17.00
$110.00
$250.00
$936.00
$50.00
33
(2)

A flavonoid with antioxidant properties that may modulate gene expression by affecting kinase signaling pathways.

Kaempferol

520-18-3sc-202679
sc-202679A
sc-202679B
25 mg
100 mg
1 g
$99.00
$216.00
$510.00
11
(1)

Could potentially modulate gene expression through its antioxidant effects and interaction with various cellular signaling molecules.

Bisphenol A

80-05-7sc-391751
sc-391751A
100 mg
10 g
$300.00
$490.00
5
(0)

An environmental compound that binds estrogen receptors and may alter the expression of certain genes.

Retinoic Acid, all trans

302-79-4sc-200898
sc-200898A
sc-200898B
sc-200898C
500 mg
5 g
10 g
100 g
$66.00
$325.00
$587.00
$1018.00
28
(1)

A derivative of vitamin A that binds to retinoic acid receptors and can modulate gene expression.

Dexamethasone

50-02-2sc-29059
sc-29059B
sc-29059A
100 mg
1 g
5 g
$91.00
$139.00
$374.00
36
(1)

A synthetic glucocorticoid that can activate glucocorticoid receptors and influence gene transcription.

5-Azacytidine

320-67-2sc-221003
500 mg
$280.00
4
(1)

A nucleoside analog of cytidine that can incorporate into RNA and DNA and potentially affect gene expression patterns.

Lithium

7439-93-2sc-252954
50 g
$214.00
(0)

May influence gene expression by modulating glycogen synthase kinase 3 (GSK3) activity and other signaling pathways related to gene transcription.

Methotrexate

59-05-2sc-3507
sc-3507A
100 mg
500 mg
$94.00
$213.00
33
(5)

Targets dihydrofolate reductase and can have downstream effects on nucleotide synthesis and gene expression.