Date published: 2025-10-30

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RIBC2 Activators

RIBC2, also known as RIB43A domain with coiled-coils 2, is a protein that is not widely characterized in the scientific literature. As such, the specific function and biochemical pathways associated with RIBC2 may not be well-established or may vary depending on the context of the research. When proteins like RIBC2 are not extensively studied, their descriptions often involve predictions based on sequence homology, domain architecture, and sometimes their expression patterns.

Proteins with the "RIB" prefix are often thought to have some connection to ribonucleoprotein complexes or ribosomal function, while the designation "43A" could potentially refer to a specific family or type of protein identified by such a sequence or domain characteristic. The term "domain with coiled-coils" suggests that the protein has structural domains that contain coiled-coil regions – these are structural motifs where 2-7 alpha-helices are coiled together like the strands of a rope, and they often mediate protein-protein interactions.Based on the name, RIBC2 may have roles in cellular processes that involve RNA binding or the assembly and function of ribonucleoprotein complexes. Coiled-coil domains are versatile in their function and can be involved in various intracellular tasks, such as providing scaffolds for the assembly of protein complexes, facilitating vesicle transport, or participating in the regulation of gene expression.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Forskolin

66575-29-9sc-3562
sc-3562A
sc-3562B
sc-3562C
sc-3562D
5 mg
50 mg
1 g
2 g
5 g
$76.00
$150.00
$725.00
$1385.00
$2050.00
73
(3)

Forskolin increases intracellular cAMP levels, which can enhance RDCC2 activity through cAMP-dependent protein kinase (PKA) pathways, potentially affecting RDCC2-related functions.

Ionomycin

56092-82-1sc-3592
sc-3592A
1 mg
5 mg
$76.00
$265.00
80
(4)

Ionomycin raises intracellular calcium levels, thereby activating calcium-dependent signaling that could lead to the enhancement of RDCC2 activity in calcium-regulated processes.

PMA

16561-29-8sc-3576
sc-3576A
sc-3576B
sc-3576C
sc-3576D
1 mg
5 mg
10 mg
25 mg
100 mg
$40.00
$129.00
$210.00
$490.00
$929.00
119
(6)

PMA is a PKC activator that may indirectly enhance RDCC2 activity by modulating PKC-dependent signaling pathways involved in RDCC2's function.

8-Bromoadenosine 3′,5′-cyclic monophosphate

23583-48-4sc-217493B
sc-217493
sc-217493A
sc-217493C
sc-217493D
25 mg
50 mg
100 mg
250 mg
500 mg
$106.00
$166.00
$289.00
$550.00
$819.00
2
(1)

As a cAMP analog, 8-Bromo-cAMP activates cAMP-dependent pathways that could indirectly lead to the activation of RDCC2-related cellular functions.

A23187

52665-69-7sc-3591
sc-3591B
sc-3591A
sc-3591C
1 mg
5 mg
10 mg
25 mg
$54.00
$128.00
$199.00
$311.00
23
(1)

A23187 is a calcium ionophore that can increase intracellular calcium, potentially activating RDCC2 through calcium-dependent pathways.

Isoproterenol Hydrochloride

51-30-9sc-202188
sc-202188A
100 mg
500 mg
$27.00
$37.00
5
(0)

As a beta-adrenergic agonist, Isoproterenol can raise cAMP levels, indirectly enhancing RDCC2 activity through cAMP-dependent signaling pathways.

BAPTA/AM

126150-97-8sc-202488
sc-202488A
25 mg
100 mg
$138.00
$449.00
61
(2)

BAPTA-AM is a cell-permeable calcium chelator that indirectly influences RDCC2 by altering intracellular calcium levels and the signaling pathways they regulate.

FCCP

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

FCCP uncouples mitochondrial oxidative phosphorylation, which can indirectly activate RDCC2 by influencing cellular energy states and related signaling pathways.

Oligomycin A

579-13-5sc-201551
sc-201551A
sc-201551B
sc-201551C
sc-201551D
5 mg
25 mg
100 mg
500 mg
1 g
$175.00
$600.00
$1179.00
$5100.00
$9180.00
26
(1)

Oligomycin inhibits ATP synthase, potentially increasing RDCC2 activity by causing alterations in cellular ATP levels and subsequent signaling changes.

Zinc

7440-66-6sc-213177
100 g
$47.00
(0)

Zinc pyrithione can modulate metal ion homeostasis, potentially enhancing RDCC2 activity through pathways sensitive to zinc ion concentration.