Date published: 2025-12-20

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Gm732 Inhibitors

Gm732 inhibitors are a class of chemical compounds designed to specifically target and inhibit the activity of the Gm732 gene, a gene that is not yet fully characterized but is believed to participate in various cellular processes such as gene regulation, protein interactions, and intracellular signaling. Gm732 may play a role in transcriptional control, influencing the expression of genes that are vital for maintaining cellular homeostasis and responding to environmental stimuli. Like many genes with limited functional characterization, Gm732 is likely involved in pathways that regulate fundamental biological processes such as cell growth, differentiation, or stress responses. Inhibiting Gm732 provides researchers with the opportunity to disrupt these processes, allowing them to study the gene's specific role in cellular function and its broader impact on biological mechanisms.

In research settings, Gm732 inhibitors serve as critical tools for investigating the molecular pathways that are regulated by Gm732. By blocking Gm732 activity, scientists can explore how this inhibition affects downstream processes such as gene expression, protein stability, and cellular signaling networks. This approach helps to identify the regulatory functions that Gm732 may control, including its potential influence on cellular proliferation, differentiation, or metabolic activity. Additionally, Gm732 inhibitors offer insights into the interactions between Gm732 and other regulatory proteins, helping to unravel the complex networks of gene regulation and protein interactions that maintain cellular integrity. Through these studies, Gm732 inhibitors contribute to a deeper understanding of how lesser-known genes like Gm732 function within the cell and the role they play in supporting essential biological processes.

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Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

CK 666

442633-00-3sc-361151
sc-361151A
10 mg
50 mg
$315.00
$1020.00
5
(0)

An Arp2/3 complex inhibitor, which prevents actin nucleation, a process essential for WAVE complex-mediated actin remodeling involved in membrane protrusions.

Latrunculin B

76343-94-7sc-203318
1 mg
$229.00
29
(1)

A compound that binds to actin monomers and prevents their polymerization, thereby affecting actin dynamics and potentially the activity of the WAVE complex.

Y-27632, free base

146986-50-7sc-3536
sc-3536A
5 mg
50 mg
$182.00
$693.00
88
(1)

A ROCK inhibitor, which regulates actin cytoskeleton through myosin light chain phosphorylation, and can thus affect WAVE complex function.

ML 141

71203-35-5sc-362768
sc-362768A
5 mg
25 mg
$134.00
$502.00
7
(1)

A Cdc42 inhibitor, which is a small GTPase that interacts with the WAVE complex to regulate actin polymerization.

NSC 23766

733767-34-5sc-204823
sc-204823A
10 mg
50 mg
$148.00
$597.00
75
(4)

This Rac1 inhibitor disrupts Rac1 interaction with its exchange factors, influencing WAVE complex activity due to Rac1's role in actin organization.

(±)-Blebbistatin

674289-55-5sc-203532B
sc-203532
sc-203532A
sc-203532C
sc-203532D
5 mg
10 mg
25 mg
50 mg
100 mg
$179.00
$307.00
$455.00
$924.00
$1689.00
7
(1)

A myosin II inhibitor that impedes actin-myosin contractility, which is essential for the formation of membrane protrusions controlled by the WAVE complex.

SMIFH2

340316-62-3sc-507273
5 mg
$140.00
(0)

An inhibitor of formin homology 2 domains, which interferes with actin assembly and thus can affect WAVE complex-mediated actin polymerization.

Wiskostatin

253449-04-6sc-204399
sc-204399A
sc-204399B
sc-204399C
1 mg
5 mg
25 mg
50 mg
$48.00
$122.00
$432.00
$812.00
4
(1)

A selective inhibitor of the N-WASP-Arp2/3 interaction, thus indirectly affecting WAVE complex involvement in actin-cytoskeleton reorganization.

Swinholide A, Theonella swinhoei

95927-67-6sc-205914
10 µg
$135.00
(0)

A compound that sequesters actin dimers and inhibits actin polymerization, affecting the same pathways as the WAVE complex.

Chelerythrine

34316-15-9sc-507380
100 mg
$540.00
(0)

A PKC inhibitor, which can alter downstream signaling affecting the actin cytoskeleton and thereby influence the WAVE complex activity.