Date published: 2025-9-10

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MFSD11 Inhibitors

MFSD11 inhibitors would be a putative class of compounds designed to selectively interact with and inhibit the function of the Major Facilitator Superfamily Domain Containing 11 (MFSD11) protein. MFSD11 belongs to the major facilitator superfamily (MFS), which is one of the largest groups of membrane transport proteins that facilitate the transport of a wide range of substrates across cellular membranes. The exact physiological substrates and transport mechanisms of MFSD11, however, remain less characterized compared to other members of the MFS. Inhibitors targeting MFSD11 would need to be carefully developed to ensure they specifically impede the activity of this transporter without affecting the broad array of other MFS transporters and proteins with similar domains or transport functions, thereby minimizing the impact on other critical physiological processes.

The design of MFSD11 inhibitors would likely begin with an in-depth analysis of the protein's structure to identify potential binding pockets or allosteric sites that could be targeted by small molecules. Techniques such as homology modeling, if the crystal structure is not available, could provide initial insights into the three-dimensional conformation of MFSD11. Once potential binding sites are identified, a combination of high-throughput screening and computational chemistry approaches, like molecular docking, would be employed to discover and refine molecules that could interact with these regions. The identification of such molecules would hinge on the ability to distinguish between those that specifically bind to MFSD11 and those with broader affinities for other MFS proteins, ensuring selectivity in the inhibition process.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

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 binds to DNA and inhibits RNA polymerase, which prevents mRNA synthesis and could decrease the expression of genes such as olfactory receptors.

Rifampicin

13292-46-1sc-200910
sc-200910A
sc-200910B
sc-200910C
1 g
5 g
100 g
250 g
$95.00
$322.00
$663.00
$1438.00
6
(1)

Rifampicin can inhibit bacterial RNA polymerase, and at certain concentrations, it may affect eukaryotic cells by modulating gene expression.

α-Amanitin

23109-05-9sc-202440
sc-202440A
1 mg
5 mg
$260.00
$1029.00
26
(2)

α-Amanitin inhibits eukaryotic RNA polymerase II, which could lead to a reduction in mRNA synthesis for proteins, including olfactory receptors.

Cycloheximide

66-81-9sc-3508B
sc-3508
sc-3508A
100 mg
1 g
5 g
$40.00
$82.00
$256.00
127
(5)

Cycloheximide inhibits eukaryotic protein synthesis by interfering with the translocation step in translation, potentially reducing protein levels.

Puromycin dihydrochloride

58-58-2sc-108071
sc-108071B
sc-108071C
sc-108071A
25 mg
250 mg
1 g
50 mg
$40.00
$210.00
$816.00
$65.00
394
(15)

Puromycin causes premature chain termination during protein synthesis, which can decrease the overall levels of proteins including GPCRs.

Anisomycin

22862-76-6sc-3524
sc-3524A
5 mg
50 mg
$97.00
$254.00
36
(2)

Anisomycin is a protein synthesis inhibitor that can prevent peptide chain elongation, affecting the expression of proteins.

Camptothecin

7689-03-4sc-200871
sc-200871A
sc-200871B
50 mg
250 mg
100 mg
$57.00
$182.00
$92.00
21
(2)

Camptothecin inhibits DNA topoisomerase I, leading to DNA damage and potentially affecting gene transcription.

DRB

53-85-0sc-200581
sc-200581A
sc-200581B
sc-200581C
10 mg
50 mg
100 mg
250 mg
$42.00
$185.00
$310.00
$650.00
6
(1)

DRB inhibits RNA polymerase II transcription elongation, which could suppress the expression of specific genes.

Flavopiridol

146426-40-6sc-202157
sc-202157A
5 mg
25 mg
$78.00
$254.00
41
(3)

Flavopiridol inhibits cyclin-dependent kinases, which are important for cell cycle progression and gene transcription regulation.

Betulinic Acid

472-15-1sc-200132
sc-200132A
25 mg
100 mg
$115.00
$337.00
3
(1)

Betulinic acid can modulate various signaling pathways and potentially influence gene expression indirectly.