Date published: 2026-2-14

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Gm364 Inhibitors

Gm364 inhibitors are a class of chemical compounds designed to specifically inhibit the activity of the Gm364 gene, which, though not fully characterized, is believed to play a role in various cellular processes. Gm364 belongs to a group of genes often involved in regulatory pathways, potentially influencing gene expression, protein interactions, or cellular structural integrity. Like other genes with limited functional characterization, Gm364 may participate in maintaining cellular homeostasis, modulating transcription, or contributing to intracellular signaling networks. By targeting Gm364, researchers can explore its potential role in broader biological contexts, such as cellular differentiation, gene expression regulation, or response to environmental stimuli. Inhibiting Gm364 provides insight into its specific contributions to these processes, helping to uncover the gene's function within cellular mechanisms.

In research contexts, Gm364 inhibitors are valuable for studying the molecular pathways that Gm364 might influence. By blocking Gm364, scientists can observe the effects on downstream processes, such as changes in gene expression, alterations in protein-protein interactions, or disruptions in signaling pathways. This inhibition allows researchers to better understand how Gm364 fits into the complex network of regulatory molecules within cells. Additionally, Gm364 inhibitors help to identify the potential interactions between Gm364 and other genes or regulatory proteins, offering insights into its role in coordinating cellular responses to internal and external factors. Through these studies, Gm364 inhibitors serve as critical tools for gaining a deeper understanding of how genes like Gm364 contribute to maintaining cellular balance and function, adding to the broader knowledge of gene regulation and cellular biology.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Brefeldin A

20350-15-6sc-200861C
sc-200861
sc-200861A
sc-200861B
1 mg
5 mg
25 mg
100 mg
$31.00
$53.00
$124.00
$374.00
25
(3)

Inhibits protein transport within the Golgi apparatus, potentially impacting the localization and function of Tm9sf5.

Monensin A

17090-79-8sc-362032
sc-362032A
5 mg
25 mg
$155.00
$525.00
(1)

A carboxylic ionophore that disrupts intracellular ion gradients and could impair Tm9sf5-related transport mechanisms.

Chloroquine

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

Known to accumulate in acidic vesicles and can disrupt endosomal/lysosomal function, affecting the trafficking of Tm9sf5.

Nystatin

1400-61-9sc-212431
sc-212431A
sc-212431B
sc-212431C
5 MU
25 MU
250 MU
5000 MU
$51.00
$129.00
$251.00
$3570.00
7
(1)

Binds to ergosterol altering cell membrane permeability which can disturb membrane-associated functions of Tm9sf5.

Filipin III

480-49-9sc-205323
sc-205323A
500 µg
1 mg
$118.00
$148.00
26
(2)

A polyene that can disrupt lipid rafts in cellular membranes, potentially affecting Tm9sf5's localization or function.

Amiloride

2609-46-3sc-337527
1 g
$296.00
7
(1)

Blocks epithelial sodium channels and can alter cellular ionic balance, potentially affecting Tm9sf5 function.

Ouabain-d3 (Major)

sc-478417
1 mg
$516.00
(0)

Inhibits the Na+/K+ ATPase pump, which could alter ionic homeostasis and indirectly impact Tm9sf5 activity.

12β-Hydroxydigitoxin

20830-75-5sc-213604
sc-213604A
1 g
5 g
$143.00
$694.00
(0)

Another Na+/K+ ATPase inhibitor that can disrupt cellular ionic balance, potentially influencing Tm9sf5.

Dynamin Inhibitor I, Dynasore

304448-55-3sc-202592
10 mg
$89.00
44
(2)

A small molecule that inhibits dynamin and can disrupt endocytosis, potentially affecting Tm9sf5's recycling or degradation.

Nocodazole

31430-18-9sc-3518B
sc-3518
sc-3518C
sc-3518A
5 mg
10 mg
25 mg
50 mg
$59.00
$85.00
$143.00
$247.00
38
(2)

Disrupts microtubule polymerization and could affect intracellular trafficking routes utilized by Tm9sf5.