Date published: 2026-4-21

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Olfr635 Activators

Olfr635, a member of the olfactory receptor gene family, plays a pivotal role in the sensory perception of odorants. Positioned within the olfactory epithelium, Olfr635 functions as a sensory receptor dedicated to detecting specific chemical compounds and translating them into neuronal signals that contribute significantly to our sense of smell. The activation of Olfr635 involves a precise molecular interaction between the receptor and specific odorant molecules. When these chemicals bind to the receptor, they induce a conformational change in Olfr635, initiating intracellular signaling cascades. This signaling cascade ultimately leads to the activation of olfactory sensory neurons, generating action potentials that transmit information to the brain for odor perception. The specific pathways and signaling events initiated by each chemical activator mentioned in the table lead to the functional activation of Olfr635, allowing us to perceive and discriminate various odors in our environment.

In conclusion, Olfr635's function is fundamental to our sense of smell, enabling us to detect and distinguish a wide range of odorant molecules. The activation process involves precise molecular events, starting with the binding of specific chemicals to the receptor and culminating in the generation of neural signals, enriching our sensory experience of the world through olfaction.

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Ethyl butyrate

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

Ethyl butyrate directly activates Olfr635 by binding to the receptor, initiating a conformational change that leads to downstream signaling, ultimately resulting in the functional activation of the protein.

Isopentyl acetate

123-92-2sc-250190
sc-250190A
100 ml
500 ml
$107.00
$225.00
(0)

Isopentyl acetate serves as a specific activator of Olfr635, binding to the receptor and initiating intracellular signaling events, leading to the functional activation of the protein.

Methyl Salicylate

119-36-8sc-204802
sc-204802A
250 ml
500 ml
$47.00
$70.00
(1)

Methyl salicylate directly activates Olfr635 by binding to the receptor, triggering a conformational change that initiates downstream signaling pathways, leading to the functional activation of the protein.

α-Pinene

80-56-8sc-233784
sc-233784A
5 ml
250 ml
$52.00
$115.00
2
(0)

Alpha-pinene serves as a specific activator of Olfr635, binding to the receptor and initiating intracellular signaling events, ultimately leading to the functional activation of the protein.

Eugenol

97-53-0sc-203043
sc-203043A
sc-203043B
1 g
100 g
500 g
$32.00
$62.00
$218.00
2
(1)

Eugenol directly activates Olfr635 by binding to the receptor and triggering intracellular signaling pathways, resulting in the functional activation of the protein.

Geraniol

106-24-1sc-235242
sc-235242A
25 g
100 g
$45.00
$119.00
(0)

Geraniol specifically activates Olfr635, binding to its receptor and promoting conformational changes, which initiate downstream signaling events, ultimately leading to functional activation.

Linalool

78-70-6sc-250250
sc-250250A
sc-250250B
5 g
100 g
500 g
$47.00
$72.00
$110.00
(0)

Linalool directly activates Olfr635 by binding to the receptor, inducing conformational changes and initiating intracellular signaling pathways, ultimately resulting in the functional activation of the protein.

2-Heptanone

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

2-Heptanone serves as a specific activator of Olfr635, binding to the receptor and initiating downstream signaling events, ultimately leading to the functional activation of the protein.

Cinnamic Aldehyde

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

Cinnamic Aldehyde specifically activates Olfr635 by binding to its receptor, inducing conformational changes and initiating downstream signaling cascades, resulting in functional activation.

Isovaleraldehyde

590-86-3sc-250204
sc-250204A
25 ml
100 ml
$20.00
$39.00
(0)

Isovaleraldehyde directly activates Olfr635 by binding to the receptor and triggering intracellular signaling pathways, resulting in the functional activation of the protein.