Date published: 2025-10-10

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CaM III Inhibitors

Calmodulin III (CaM III) inhibitors represent a class of chemical compounds specifically designed to target and modulate the activity of Calmodulin III, which is one of the isoforms of calmodulin, a calcium-binding protein. Calmodulin is a critical intracellular signaling molecule that plays a central role in regulating various cellular processes by transducing calcium signals into specific biochemical responses. Calmodulin III is distinct from other calmodulin isoforms due to differences in its tissue expression patterns and potentially unique functions. Inhibitors of CaM III are developed to interact with this specific isoform, potentially influencing its calcium-binding properties, its interactions with target proteins, or its roles in cellular signaling pathways.

Structurally, CaM III inhibitors are meticulously designed to engage specific regions or binding sites on the CaM III protein. This interaction may disrupt the normal functioning of CaM III, potentially affecting its ability to bind calcium ions and modulate downstream signaling events. The mechanisms by which CaM III inhibitors exert their effects can vary, but their primary objective is to serve as valuable tools for researchers investigating the roles of CaM III in cellular signaling processes. By studying the biochemical and functional aspects of CaM III and its modulation by inhibitors, researchers can gain insights into the intricate mechanisms that govern calcium signaling and its impact on various cellular functions, contributing to our understanding of fundamental cellular processes.

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Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

W-7

61714-27-0sc-201501
sc-201501A
sc-201501B
50 mg
100 mg
1 g
$163.00
$300.00
$1642.00
18
(1)

W-7 is a selective calmodulin antagonist. It interferes with the binding of Ca2+ to calmodulin and can inhibit calmodulin-regulated activities.

Trifluoperazine Dihydrochloride

440-17-5sc-201498
sc-201498A
1 g
5 g
$56.00
$99.00
9
(1)

Trifluoperazine is an antipsychotic that also acts as a calmodulin inhibitor. It can interfere with calmodulin-dependent enzymes and processes.

Calmidazolium chloride

57265-65-3sc-201494
sc-201494A
10 mg
50 mg
$153.00
$600.00
27
(1)

Calmidazolium is a potent calmodulin antagonist. It can inhibit calmodulin-mediated enzymatic activities.

Chlorpromazine

50-53-3sc-357313
sc-357313A
5 g
25 g
$60.00
$108.00
21
(1)

Chlorpromazine is an antipsychotic drug with calmodulin-inhibiting properties. It can affect various calmodulin-dependent processes.

Ophiobolin A

4611-05-6sc-202266
sc-202266A
sc-202266B
100 µg
1 mg
5 mg
$43.00
$245.00
$714.00
7
(1)

Ophiobolin A is a fungal metabolite that acts as a calmodulin antagonist, inhibiting calmodulin-dependent activities.

Tamoxifen

10540-29-1sc-208414
2.5 g
$256.00
18
(2)

Tamoxifen, commonly known as an estrogen receptor modulator, also has calmodulin-inhibiting properties.

W-5 Isomer hydrochloride

35517-14-7sc-208488
sc-208488A
1 mg
5 mg
$71.00
$195.00
(0)

W-5 is a calmodulin antagonist. It is structurally related to W-7 and can inhibit calmodulin-mediated activities.

Quinacrine, Dihydrochloride

69-05-6sc-204222
sc-204222B
sc-204222A
sc-204222C
sc-204222D
100 mg
1 g
5 g
200 g
300 g
$45.00
$56.00
$85.00
$3193.00
$4726.00
4
(2)

Mepacrine is an antimalarial drug that also has calmodulin-inhibiting properties. It can interfere with calmodulin-dependent activities.

Phenothiazine

92-84-2sc-250686
sc-250686A
50 g
250 g
$23.00
$43.00
(0)

Phenothiazines are a group of antipsychotic drugs that have shown calmodulin-inhibiting activities.

Verapamil

52-53-9sc-507373
1 g
$367.00
(0)

Verapamil is a calcium channel blocker that has also been found to inhibit calmodulin, affecting calmodulin-mediated cellular processes.