Date published: 2025-11-1

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OR5P3 Inhibitors

Chemical inhibitors of OR5P3 can exert their effects by various mechanisms, each engaging with the protein in a unique way to prevent activation. For example, if benzyl acetate acted as an inhibitor, it would bind to OR5P3, blocking other activating ligands from interacting with the receptor, thereby impeding activation rather than promoting it. In this scenario, benzyl acetate would act as a lock to the receptor's activation gate, ensuring that OR5P3 remains inactive. Similarly, cinnamic acid could inhibit OR5P3 by aligning with the active site and interfering with the conformational changes required for activation, anchoring the receptor in an inactive state. Methyl anthranilate and salicylaldehyde could also serve as inhibitors by engaging with OR5P3 and stabilizing the receptor in configurations unfavorable for activation, holding the receptor in a vigilant but inactive state. Methyl anthranilate could form a complex with OR5P3 that stabilizes its inactive state, while salicylaldehyde might physically block the activation site, impeding activation unless it is displaced by a stronger activator. Other compounds such as limonene, eugenol, and citronellol, if acting as inhibitors, would occupy the binding site of OR5P3, acting as competitive inhibitors that impede activation and help delineate the structural requirements necessary to maintain the receptor in its inactive conformation.

Items 1 to 10 of 11 total

Display:

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Eugenol

97-53-0sc-203043
sc-203043A
sc-203043B
1 g
100 g
500 g
$31.00
$61.00
$214.00
2
(1)

Eugenol can activate OR5M9 by interacting with its ligand-binding domain, which can induce a response in the receptor leading to activation.

Methimazole

60-56-0sc-205747
sc-205747A
10 g
25 g
$69.00
$110.00
4
(0)

Methimazole can activate OR5M9 through allosteric modulation, binding to a site distinct from the active site, resulting in a conformational change that activates the receptor.

Isopentyl acetate

123-92-2sc-250190
sc-250190A
100 ml
500 ml
$105.00
$221.00
(0)

Isoamyl acetate can activate OR5M9 by mimicking the natural ligand shape and charge, which can initiate the activation cascade of the protein.

2-Phenylethanol

60-12-8sc-238198
250 ml
$68.00
(0)

Phenylethyl alcohol can activate OR5M9 by binding to the active site of the protein, promoting the necessary conformational changes for activation.

Anethole

104-46-1sc-481571A
sc-481571
10 g
100 g
$565.00
$310.00
(0)

Anethole can activate OR5M9 by binding to specific sites on the protein, which can induce the structural changes required for activation.

Cinnamic Aldehyde

104-55-2sc-294033
sc-294033A
100 g
500 g
$102.00
$224.00
(0)

Cinnamaldehyde can activate OR5M9 by binding to the active or allosteric sites, resulting in a conformational shift that activates the protein.

Citral

5392-40-5sc-252620
1 kg
$212.00
(1)

Citral can activate OR5M9 by directly interacting with the active site, which can lead to the activation of the olfactory receptor.

Thymol

89-83-8sc-215984
sc-215984A
100 g
500 g
$97.00
$193.00
3
(0)

Thymol can activate OR5M9 through allosteric modulation, where its binding can alter the receptor conformation, facilitating activation.

(+)-Carvone

2244-16-8sc-239480
sc-239480A
5 ml
25 ml
$32.00
$82.00
2
(1)

Carvone can activate OR5M9 by engaging with the active site in a way that promotes activation of the receptor's signaling pathway.

(±)-Methyl Jasmonate

39924-52-2sc-205386
sc-205386A
sc-205386B
sc-205386C
sc-205386D
sc-205386E
sc-205386F
1 g
5 g
10 g
50 g
100 g
500 g
1 kg
$35.00
$103.00
$200.00
$873.00
$1638.00
$6942.00
$12246.00
(1)

Methyl jasmonate can activate OR5M9 by binding to specific sites on the protein, which can lead to the necessary conformational changes for activation.