Date published: 2026-3-3

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ZFP64 Inhibitors

ZFP64 inhibitors belong to a distinctive chemical class designed to modulate the activity of the Zinc Finger Protein 64 (ZFP64), a transcription factor that plays a pivotal role in gene expression regulation. Zinc finger proteins are characterized by the presence of zinc ion-coordinating motifs that facilitate their binding to specific DNA sequences, thereby influencing the transcriptional processes. ZFP64, in particular, is involved in the modulation of genes associated with diverse cellular functions, including development, differentiation, and immune response. The inhibitors designed for ZFP64 target its functional domains, disrupting the protein's ability to interact with DNA and thereby impeding its transcriptional regulatory functions.

ZFP64 inhibitors is carefully crafted to achieve high specificity and affinity for the target protein, ensuring a precise and controlled interference with its biological activity. These small molecules or peptides often contain moieties that can bind to the zinc finger domains of ZFP64, preventing its effective interaction with the DNA. Through this mechanism, ZFP64 inhibitors serve as valuable tools in deciphering the intricate web of gene regulatory networks within cells. Researchers utilize these inhibitors in laboratory settings to investigate the downstream effects of inhibiting ZFP64, shedding light on the precise contributions of this transcription factor to cellular processes. The development and study of ZFP64 inhibitors contribute significantly to advancing our understanding of gene regulation, offering insights into potential avenues for manipulating cellular functions for research purposes.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

1,10-Phenanthroline

66-71-7sc-255888
sc-255888A
2.5 g
5 g
$23.00
$32.00
(0)

An organic compound that chelates metal ions; can disrupt ZFP64 function by binding to the zinc ions necessary for the protein’s structural integrity.

Zinc

7440-66-6sc-213177
100 g
$48.00
(0)

Utilized primarily for its antifungal properties, this compound can chelate zinc ions, potentially altering ZFP64's ability to bind to DNA.

Pyrrolidinedithiocarbamic acid ammonium salt

5108-96-3sc-203224
sc-203224A
5 g
25 g
$33.00
$64.00
11
(1)

A metal chelator and antioxidant that may indirectly affect ZFP64 by altering the cellular redox state and modulating the activity of NF-kB, a transcription factor that may interact with ZFP64 regulated pathways.

TPEN

16858-02-9sc-200131
100 mg
$130.00
10
(3)

A high-affinity zinc chelator that can strip zinc from zinc finger domains, potentially disrupting ZFP64 DNA binding capacity.

PMA

16561-29-8sc-3576
sc-3576A
sc-3576B
sc-3576C
sc-3576D
1 mg
5 mg
10 mg
25 mg
100 mg
$41.00
$132.00
$214.00
$500.00
$948.00
119
(6)

An activator of protein kinase C that can modulate signal transduction pathways, possibly affecting ZFP64's role in transcription regulation.

MG-132 [Z-Leu- Leu-Leu-CHO]

133407-82-6sc-201270
sc-201270A
sc-201270B
5 mg
25 mg
100 mg
$60.00
$265.00
$1000.00
163
(3)

A proteasome inhibitor that can increase the levels of transcription factors and co-regulators, possibly leading to altered ZFP64 activity due to changes in cellular protein homeostasis.

Triptolide

38748-32-2sc-200122
sc-200122A
1 mg
5 mg
$90.00
$204.00
13
(1)

A diterpene triepoxide that can inhibit transcription factors and may influence ZFP64 function by altering gene expression patterns.

5-Azacytidine

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

A nucleoside analog of cytidine that incorporates into DNA and RNA, which can cause demethylation and affect gene expression, potentially impacting ZFP64 function.

Trichostatin A

58880-19-6sc-3511
sc-3511A
sc-3511B
sc-3511C
sc-3511D
1 mg
5 mg
10 mg
25 mg
50 mg
$152.00
$479.00
$632.00
$1223.00
$2132.00
33
(3)

A histone deacetylase inhibitor that can change chromatin structure and gene expression, possibly influencing the genomic targets of ZFP64.

Chloroquine

54-05-7sc-507304
250 mg
$69.00
2
(0)

An antimalarial compound that can affect DNA and RNA synthesis, potentially altering the transcriptional activity where ZFP64 is involved.