Date published: 2025-11-24

1-800-457-3801

SCBT Portrait Logo
Seach Input

C11orf83 Inhibitors

C11orf83 inhibitors form a distinct category of chemical compounds designed to selectively modulate the activity of the Chromosome 11 Open Reading Frame 83 (C11orf83) protein. This particular open reading frame, although located on chromosome 11, remains relatively underexplored in terms of its molecular functions and cellular roles. The inhibitors tailored for C11orf83 exhibit a specific chemical structure enabling them to interact selectively with defined binding sites on the C11orf83 protein, thereby influencing its molecular activities within the cellular context. The precise design of these inhibitors is crucial for ensuring a high degree of specificity, minimizing unintended effects on other cellular components or proteins within the broader open reading frame family.

The mechanism of action of C11orf83 inhibitors involves disrupting the normal functioning of the C11orf83 protein, potentially impacting cellular processes associated with its functional role. The selectivity of these inhibitors is paramount to prevent interference with other closely related proteins or cellular pathways. As researchers delve into the intricacies of cellular biology and functional genomics, C11orf83 inhibitors serve as valuable tools, allowing for the investigation of the precise molecular mechanisms governed by C11orf83. The study of this chemical class contributes to a deeper understanding of the role played by C11orf83 in cellular physiology, offering insights into its potential functions within the intricate networks that regulate various cellular processes. Overall, the exploration of C11orf83 inhibitors provides a platform for advancing our understanding of the molecular landscape surrounding this relatively less-explored member of the open reading frame family.

SEE ALSO...

Items 1 to 10 of 12 total

Display:

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Rotenone

83-79-4sc-203242
sc-203242A
1 g
5 g
$89.00
$254.00
41
(1)

Rotenone is an inhibitor of mitochondrial complex I. Prolonged inhibition of complex I can lead to reduced mitochondrial biogenesis and potentially lower UQCC3 expression.

Antimycin A

1397-94-0sc-202467
sc-202467A
sc-202467B
sc-202467C
5 mg
10 mg
1 g
3 g
$54.00
$62.00
$1642.00
$4600.00
51
(1)

Antimycin A inhibits mitochondrial complex III. Blocking this complex can disrupt overall mitochondrial function and may downregulate the expression of assembly factors like UQCC3.

Oligomycin

1404-19-9sc-203342
sc-203342C
10 mg
1 g
$146.00
$12250.00
18
(2)

Oligomycin inhibits ATP synthase. By disrupting ATP production, it can indirectly affect the expression of mitochondrial proteins, possibly including UQCC3.

Chloramphenicol

56-75-7sc-3594
25 g
$53.00
10
(1)

Chloramphenicol inhibits mitochondrial protein synthesis by binding to the peptidyl transferase center of the mitochondrial ribosome, possibly affecting UQCC3 synthesis.

Ethidium bromide

1239-45-8sc-203735
sc-203735A
sc-203735B
sc-203735C
1 g
5 g
25 g
100 g
$47.00
$147.00
$576.00
$2045.00
12
(1)

Ethidium bromide intercalates into DNA and can inhibit both nuclear and mitochondrial DNA replication and transcription, possibly reducing UQCC3 expression.

Methylene blue

61-73-4sc-215381B
sc-215381
sc-215381A
25 g
100 g
500 g
$42.00
$102.00
$322.00
3
(1)

Methylene blue can uncouple electron transport in mitochondria and affect energy production, possibly altering the expression of mitochondrial proteins such as UQCC3.

Paraquat chloride

1910-42-5sc-257968
250 mg
$149.00
7
(1)

Paraquat generates reactive oxygen species within mitochondria, leading to oxidative stress which could interfere with mitochondrial gene expression, potentially affecting UQCC3.

FCCP

370-86-5sc-203578
sc-203578A
10 mg
50 mg
$92.00
$348.00
46
(1)

FCCP uncouples oxidative phosphorylation by dissipating the proton gradient across the mitochondrial membrane, affecting overall mitochondrial function and potentially UQCC3 expression.

2,4-Dinitrophenol, wetted

51-28-5sc-238345
250 mg
$58.00
2
(1)

2,4-DNP acts as a protonophore, uncoupling ATP synthesis from electron transport, which could lead to a decrease in mitochondrial protein expression, including UQCC3.

Atovaquone

95233-18-4sc-217675
10 mg
$265.00
2
(0)

Atovaquone selectively inhibits mitochondrial electron transport at cytochrome bc1 (complex III), which may reduce the expression of assembly factors like UQCC3.