Date published: 2025-11-1

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IQCF4 Activators

IQCF4 Activators comprise a distinctive category of chemical compounds developed to specifically interact with and activate the IQCF4 protein. IQCF4, belonging to the family of IQ motif-containing proteins, is characterized by the presence of the IQ motif-a sequence of amino acids that typically facilitates the binding of these proteins to other cellular components, such as calmodulin. This motif plays a crucial role in mediating the protein's interactions within the cell, influencing various cellular processes. The primary function of IQCF4 and the full extent of its involvement in cellular mechanisms are areas of ongoing research. IQCF4 Activators are designed to bind to this protein, potentially altering its structural conformation, stability, or its interactions with other cellular molecules. Such alterations are significant as they can modulate the natural activities and functions of IQCF4 within the cell, impacting cellular signaling and communication pathways.

The study of IQCF4 Activators is a significant focus within molecular biology and biochemistry due to their targeted interaction with the IQCF4 protein. These activators, generally small molecular entities, are structured to specifically attach to distinct sites on the IQCF4 protein, inducing alterations in its activity. The specific mechanism through which these activators exert their effects largely depends on their chemical composition and the nature of their interaction with IQCF4. By binding to the protein, these activators can influence how IQCF4 interacts with other cellular entities, including its receptors and various signaling molecules. This can trigger a series of cellular responses, modifying processes related to cell signaling and communication. Research in this area aims to deepen the understanding of the complex network of protein interactions in cellular systems, particularly focusing on the role of IQ motif-containing proteins like IQCF4. Insights gleaned from studying the interactions and effects of IQCF4 Activators are invaluable for elucidating the intricate mechanisms governing cellular function and the regulatory processes of signaling pathways.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

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)

A metabolite of vitamin A that acts as a transcriptional regulator by binding to retinoic acid receptors.

Dexamethasone

50-02-2sc-29059
sc-29059B
sc-29059A
100 mg
1 g
5 g
$76.00
$82.00
$367.00
36
(1)

A synthetic glucocorticoid that can modulate inflammation pathways and affect gene transcription.

Lithium

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

A GSK-3 inhibitor that can affect Wnt signaling and may alter gene expression patterns.

Vinclozolin

50471-44-8sc-251425
250 mg
$23.00
1
(1)

A fungicide known to act as an anti-androgen, potentially affecting gene regulation via hormone pathways.

Bisphenol A

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

An endocrine disruptor that can mimic estrogen and potentially impact gene expression.

PMA

16561-29-8sc-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
(6)

An activator of protein kinase C (PKC) that can influence multiple signaling pathways and gene expression.

Sodium (meta)arsenite

7784-46-5sc-250986
sc-250986A
100 g
1 kg
$106.00
$765.00
3
(2)

A stress inducer that can affect gene expression through oxidative stress and other mechanisms.

Mifepristone

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

A glucocorticoid and progesterone receptor antagonist that may influence gene transcription.

Dimethyl Sulfoxide (DMSO)

67-68-5sc-202581
sc-202581A
sc-202581B
100 ml
500 ml
4 L
$30.00
$115.00
$900.00
136
(6)

A solvent that can also induce differentiation and modulate gene expression in some cell types.

5-Azacytidine

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

A nucleoside analog that can inhibit DNA methylation, potentially leading to altered gene expression.