Date published: 2026-4-1

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Olfr906 Activators

Olfr906 is an olfactory receptor protein responsible for detecting specific odorants in our environment. Its activation is crucial for our sense of smell. Olfr906 directly recognizes and responds to odorant molecules by binding to its receptor site, initiating a conformational change. This change triggers olfactory signal transduction, leading to the functional activation of Olfr906. In addition to direct activation, Olfr906 can also be indirectly activated by chemicals like Cyclic AMP (cAMP) and Diacylglycerol (DAG). These compounds enhance olfactory receptor sensitivity by modulating intracellular pathways that increase responsiveness to odorants. Similarly, chemicals like Nitric Oxide (NO) and Inositol Trisphosphate (IP3) influence guanylyl cyclase (GC) and calcium levels, respectively, leading to increased intracellular messengers that enhance Olfr906's sensitivity to odorants.

In summary, Olfr906 is a vital component of our olfactory system, allowing us to perceive and distinguish various scents in our environment. Its activation is achieved through direct binding to odorants or indirectly by modulating intracellular pathways that enhance receptor sensitivity, ultimately leading to our ability to detect and recognize specific smells.

SEE ALSO...

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

2-Heptanone

110-43-0sc-238060
1 ml
$94.00
(0)

2-Heptanone directly activates Olfr906 by binding to its receptor site, initiating a conformational change that triggers olfactory signal transduction, resulting in the functional activation of Olfr906.

Acetophenone

98-86-2sc-239189
5 g
$20.00
(0)

Acetophenone directly activates Olfr906 by binding to its receptor site, leading to a conformational change that initiates olfactory signal transduction, resulting in the functional activation of Olfr906.

2(5H)-Furanone

497-23-4sc-251889
sc-251889A
1 g
5 g
$55.00
$267.00
(0)

Furanone directly activates Olfr906 by binding to its receptor site, inducing a conformational change that initiates olfactory signal transduction, leading to the functional activation of Olfr906.

Cinnamic Aldehyde

104-55-2sc-294033
sc-294033A
100 g
500 g
$104.00
$228.00
(0)

Cinnamaldehyde directly activates Olfr906 by binding to its receptor site, initiating a conformational change that triggers olfactory signal transduction, resulting in the functional activation of Olfr906.

Ethyl butyrate

105-54-4sc-214986
sc-214986A
1 kg
4 kg
$100.00
$210.00
(0)

Ethyl Butyrate directly activates Olfr906 by binding to its receptor site, leading to a conformational change that initiates olfactory signal transduction, resulting in the functional activation of Olfr906.

Adenosine 3′,5′-cyclic monophosphate

60-92-4sc-217584
sc-217584A
sc-217584B
sc-217584C
sc-217584D
sc-217584E
100 mg
250 mg
5 g
10 g
25 g
50 g
$116.00
$179.00
$265.00
$369.00
$629.00
$1150.00
(1)

Cyclic AMP (cAMP) indirectly activates Olfr906 by enhancing the sensitivity of olfactory receptors, including Olfr906, to odorant molecules. It modulates the olfactory signal transduction pathway, leading to increased responsiveness and the functional activation of Olfr906 in odor detection.

Isoniazid

54-85-3sc-205722
sc-205722A
sc-205722B
5 g
50 g
100 g
$26.00
$101.00
$146.00
(1)

Isoniazid indirectly activates Olfr906 by stimulating the release of calcium ions from intracellular stores. This increased intracellular calcium enhances the responsiveness of olfactory receptors, including Olfr906, to odorants, facilitating their functional activation in odor detection.

L-α-Phosphatidylinositol sodium salt

383907-36-6sc-221821
10 mg
$408.00
1
(0)

Phosphatidylinositol (PI) indirectly activates Olfr906 by modulating the olfactory signal transduction pathway. It generates inositol trisphosphate (IP3), leading to increased intracellular calcium levels and enhancing the responsiveness of olfactory receptors, including Olfr906, to odorants. This results in the functional activation of Olfr906 in odor detection.