Date published: 2025-12-18

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ANKRD62 Inhibitors

ANKRD62 Inhibitors are a distinct class of chemical compounds that specifically target and inhibit the ANKRD62 protein, a member of the ankyrin repeat domain-containing family. These proteins are characterized by ankyrin repeat domains, which are crucial motifs that facilitate protein-protein interactions, playing significant roles in various cellular processes such as signal transduction, transcriptional regulation, and cytoskeletal organization. ANKRD62 Inhibitors function by binding to the ankyrin repeat domains of the ANKRD62 protein, thereby preventing it from interacting with its natural binding partners. This inhibition is typically achieved through the precise molecular design of the inhibitor, which is tailored to fit into the binding sites or pockets within the ankyrin repeat domains. The interaction between the inhibitor and ANKRD62 can disrupt the normal conformation of the protein or block key interfaces required for its functional interactions, thereby modulating the activity of ANKRD62 in cellular pathways.

The chemical properties of ANKRD62 Inhibitors, including their molecular structure, solubility, and stability, are critical in determining their effectiveness in inhibiting the ANKRD62 protein. These inhibitors are often designed with specific structural features that allow them to interact tightly and selectively with the ankyrin repeat domains of ANKRD62. For instance, the inhibitors may include hydrophobic regions that enhance their affinity for non-polar binding sites within the protein, as well as polar or charged functional groups that form hydrogen bonds or electrostatic interactions with amino acid residues critical for the protein's function. Additionally, the inhibitors must be stable and soluble in the cellular environment to ensure that they can reach and bind to ANKRD62 effectively. The binding kinetics, such as the rates of association and dissociation between the inhibitor and ANKRD62, also play a crucial role in determining the potency and duration of inhibition. By studying the interactions between ANKRD62 Inhibitors and their target protein, researchers can gain valuable insights into the molecular mechanisms governing protein-protein interactions within cells and the broader biological processes in which ANKRD62 is involved. This understanding is essential for elucidating the role of ANKRD62 in maintaining cellular function and regulation.

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Trichostatin A

58880-19-6sc-3511
sc-3511A
sc-3511B
sc-3511C
sc-3511D
1 mg
5 mg
10 mg
25 mg
50 mg
$149.00
$470.00
$620.00
$1199.00
$2090.00
33
(3)

Trichostatin A inhibits histone deacetylases, leading to altered chromatin structure and potentially reduced gene expression.

5-Azacytidine

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

5-Azacytidine incorporates into DNA, inhibiting DNA methyltransferase and altering gene expression patterns.

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)

Decitabine is a DNA methyltransferase inhibitor which can lead to hypomethylation and changes in gene expression.

Suberoylanilide Hydroxamic Acid

149647-78-9sc-220139
sc-220139A
100 mg
500 mg
$130.00
$270.00
37
(2)

Vorinostat selectively inhibits histone deacetylases, affecting acetylation status and gene expression.

RG 108

48208-26-0sc-204235
sc-204235A
10 mg
50 mg
$128.00
$505.00
2
(1)

RG108 blocks DNA methyltransferases, potentially reducing methylation and suppressing gene expression.

Mithramycin A

18378-89-7sc-200909
1 mg
$54.00
6
(1)

Mithramycin A binds to G-C rich DNA sequences, interfering with transcription factor binding and gene expression.

Chloroquine

54-05-7sc-507304
250 mg
$68.00
2
(0)

Chloroquine can elevate cellular pH, affecting various enzymes and potentially impacting gene expression.

Actinomycin D

50-76-0sc-200906
sc-200906A
sc-200906B
sc-200906C
sc-200906D
5 mg
25 mg
100 mg
1 g
10 g
$73.00
$238.00
$717.00
$2522.00
$21420.00
53
(3)

Actinomycin D intercalates into DNA, inhibiting RNA polymerase and reducing gene transcription.

Triptolide

38748-32-2sc-200122
sc-200122A
1 mg
5 mg
$88.00
$200.00
13
(1)

Triptolide has been shown to inhibit transcriptional activity, impacting gene expression profiles.

Rapamycin

53123-88-9sc-3504
sc-3504A
sc-3504B
1 mg
5 mg
25 mg
$62.00
$155.00
$320.00
233
(4)

Sirolimus binds to mTOR, altering downstream signaling pathways and potentially gene expression.