Date published: 2026-4-1

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SCaMC-1 Inhibitors

SCaMC-1 inhibitors refer to compounds that target and inhibit the function of the SCaMC-1 protein, also known as SLC25A24, which belongs to the mitochondrial carrier family. SCaMC-1 is primarily involved in the transport of adenine nucleotides and plays a crucial role in the regulation of cellular energy metabolism by transporting AMP, ADP, and ATP across the mitochondrial membrane. The inhibition of SCaMC-1 disrupts the energy balance within the mitochondria, affecting processes related to ATP homeostasis and the cellular stress response. Structurally, SCaMC-1 possesses typical mitochondrial carrier motifs, including six transmembrane domains, and operates via a conserved mechanism involving substrate translocation through conformational changes. Inhibitors targeting SCaMC-1 may interact with its substrate-binding site or modulate its conformational flexibility to impede its function.

Chemically, SCaMC-1 inhibitors are diverse, including small organic molecules designed to target specific binding sites on the protein. These inhibitors may affect not only the transport of adenine nucleotides but also modulate mitochondrial dynamics by influencing membrane potential and proton gradients. By blocking the transporter's activity, these compounds can alter the balance of mitochondrial substrates, leading to perturbations in oxidative phosphorylation and potentially inducing mitochondrial stress. Given the importance of SCaMC-1 in maintaining cellular bioenergetics, its inhibition can result in substantial metabolic shifts, especially under conditions of nutrient scarcity or oxidative stress. Furthermore, research into SCaMC-1 inhibitors often focuses on their ability to fine-tune mitochondrial function and probe its role in various metabolic pathways without direct modulation of other mitochondrial transporters.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Cycloheximide

66-81-9sc-3508B
sc-3508
sc-3508A
100 mg
1 g
5 g
$41.00
$84.00
$275.00
127
(6)

This compound is a general inhibitor of protein synthesis in eukaryotes. By inhibiting protein synthesis, Cycloheximide could reduce the overall levels of SLC25A24 in cells.

Actinomycin D

50-76-0sc-200906
sc-200906A
sc-200906B
sc-200906C
sc-200906D
5 mg
25 mg
100 mg
1 g
10 g
$74.00
$243.00
$731.00
$2572.00
$21848.00
53
(3)

Known for inhibiting RNA synthesis, Actinomycin D could prevent the transcription of the SLC25A24 gene, thus decreasing its expression.

Rapamycin

53123-88-9sc-3504
sc-3504A
sc-3504B
1 mg
5 mg
25 mg
$63.00
$158.00
$326.00
233
(4)

Rapamycin can inhibit mTOR signaling which is linked to protein synthesis. This could indirectly reduce the synthesis of SLC25A24.

5-Azacytidine

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

As a DNA methyltransferase inhibitor, 5-Azacytidine might change the methylation pattern of the SLC25A24 gene promoter, potentially suppressing its expression.

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)

This compound is an inhibitor of histone deacetylase (HDAC). By affecting histone acetylation, Trichostatin A could influence the chromatin structure of the SLC25A24 gene, possibly hindering its expression.

Mycophenolic acid

24280-93-1sc-200110
sc-200110A
100 mg
500 mg
$69.00
$266.00
8
(1)

An inhibitor of inosine monophosphate dehydrogenase (IMPDH) that could indirectly affect ATP levels, potentially influencing the SLC25A24 protein function.

Wortmannin

19545-26-7sc-3505
sc-3505A
sc-3505B
1 mg
5 mg
20 mg
$67.00
$223.00
$425.00
97
(3)

This is a PI3K inhibitor. By inhibiting the PI3K pathway, Wortmannin could alter cellular ATP needs and indirectly affect SLC25A24 function.

Allopurinol

315-30-0sc-207272
25 g
$131.00
(0)

By inhibiting xanthine oxidase and subsequently reducing cellular ATP production, Allopurinol might indirectly affect SLC25A24 function.

Rotenone

83-79-4sc-203242
sc-203242A
1 g
5 g
$89.00
$259.00
41
(2)

As an inhibitor of mitochondrial complex I, Rotenone could reduce ATP production in mitochondria, potentially influencing the function of SLC25A24.

Oligomycin

1404-19-9sc-203342
sc-203342C
10 mg
1 g
$149.00
$12495.00
18
(2)

By inhibiting ATP synthase, Oligomycin A reduces ATP production, which could in turn affect the transport function of SLC25A24.