Date published: 2026-5-30

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Olfr624 Activators

Olfr624 is a critical member of the olfactory receptor family, functioning as a molecular sensor for detecting and distinguishing specific odorant molecules. Located within the olfactory epithelium, Olfr624 plays a pivotal role in the sense of smell by initiating a cascade of events upon activation. The primary function of Olfr624 is to recognize and transduce chemical signals from the environment into neuronal signals that are subsequently processed by the brain, enabling the perception of distinct odors.

The activation of Olfr624 involves a highly specialized process triggered by the binding of odorant molecules to the receptor's specific binding site. This binding interaction sets in motion a complex series of intracellular signaling pathways, ultimately leading to the functional activation of the protein. These downstream events are characterized by the activation of cyclic nucleotide second messengers, such as cyclic adenosine monophosphate (cAMP), and the modulation of intracellular calcium levels. Consequently, these signaling processes result in changes in membrane potential and neurotransmitter release, facilitating the transmission of olfactory information to the brain, where it is decoded to perceive and distinguish various odors. In summary, Olfr624 is a pivotal component of the olfactory system, serving as the initial detector for specific odorants. Its activation process involves intricate molecular interactions and precise intracellular signaling events, ultimately enabling the perception and discrimination of unique odor molecules. Understanding the mechanisms governing Olfr624 activation is crucial for unraveling the complexities of olfaction, a sensory system that profoundly influences our daily experiences and interactions with the surrounding environment.

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Allyl isothiocyanate

57-06-7sc-252361
sc-252361A
sc-252361B
5 g
100 g
500 g
$44.00
$67.00
$119.00
3
(1)

Allyl isothiocyanate directly activates Olfr624 by binding to the receptor and initiating intracellular signaling pathways, 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 Olfr624 by binding to the receptor and triggering intracellular signaling pathways, resulting in the functional activation of the protein.

Acetophenone

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

Acetophenone functions as a direct activator of Olfr624 by binding to the receptor and initiating intracellular signaling events, ultimately leading to the functional activation of the protein.

Octyl acetate

112-14-1sc-236244
5 g
$24.00
(0)

Octyl acetate directly activates Olfr624 by binding to the receptor and initiating intracellular signaling pathways, leading to functional activation without modulating other pathways.

Isopentyl acetate

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

Isopentyl acetate specifically activates Olfr624 by binding to its receptor, promoting conformational changes, and initiating downstream signaling cascades, resulting in functional activation.

Butyl butyrate

109-21-7sc-239439
250 ml
$210.00
(0)

Butyl butyrate directly activates Olfr624 by binding to the receptor and triggering intracellular signaling pathways, resulting in the functional activation of the protein.

Isovaleraldehyde

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

Isovaleraldehyde directly activates Olfr624 by binding to the receptor and initiating intracellular signaling pathways, leading to the functional activation of the protein.

Pentyl acetate

628-63-7sc-215691
250 ml
$66.00
(0)

Pentyl acetate specifically activates Olfr624 by binding to its receptor, promoting conformational changes, and initiating downstream signaling cascades, resulting in functional activation.

Ethyl valerate

539-82-2sc-215002
500 ml
$83.00
(1)

Ethyl valerate directly activates Olfr624 by binding to the receptor and initiating intracellular signaling pathways, leading to functional activation without modulating other pathways.