Vmn1r20, a vomeronasal receptor predicted to play a crucial role in pheromone binding and reception, emerges as a central player in the intricate sensory mechanisms underlying chemosensory communication. Integral to the plasma membrane, this receptor is specialized in recognizing and responding to pheromones, contributing to the complex network of signaling events within the cellular environment. The activation of Vmn1r20 is orchestrated by a diverse array of chemicals that serve as direct activators, each interacting with specific domains within the pheromone receptor. These chemicals, including 2-isobutyl-3-methoxypyrazine, eucalyptol, ethyl vanillin, methyl anthranilate, linalool, hexanal, geranyl acetate, vanillin, 2-methylbutyl butyrate, methyl salicylate, benzyl acetate, and 3-methylthiopropionaldehyde, stimulate pheromone binding activity, initiating intricate signal transduction cascades and leading to the up-regulation of Vmn1r20 expression. This detailed insight into the activation mechanisms exemplifies the specificity of Vmn1r20 in response to diverse chemicals, underscoring its significance in the regulation of chemosensory processes.
In summary, Vmn1r20 plays a crucial role in chemosensory communication, particularly in the recognition and reception of pheromones. The direct activation by specific chemicals highlights the receptor's specificity, contributing to its essential role within the plasma membrane. This comprehensive understanding of Vmn1r20 and its activation mechanisms provides a foundation for further exploration of its physiological functions and its implications in the intricate world of chemical communication within biological systems.
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
Tebuthiuron | 34014-18-1 | sc-251108 | 250 mg | $92.00 | ||
2-Isobutyl-3-methoxypyrazine serves as a direct activator of Vmn1r20 by binding to the pheromone receptor domain, stimulating pheromone binding activity. It triggers signal transduction cascades, leading to up-regulation of Vmn1r20 expression and supporting its integral role in pheromone reception within chemosensory communication. | ||||||
1,8-Cineole | 470-82-6 | sc-485261 | 25 ml | $44.00 | 2 | |
1,8-Cineole acts as a direct activator of Vmn1r20 by enhancing pheromone receptor activity. It binds to the pheromone receptor domain, initiating intracellular signaling pathways and promoting the up-regulation of Vmn1r20 expression. This contributes to its essential role in chemosensory communication through pheromone binding and reception. | ||||||
3-Ethoxy-4-hydroxybenzaldehyde | 121-32-4 | sc-238538 | 100 g | $31.00 | ||
3-Ethoxy-4-hydroxybenzaldehyde serves as a direct activator of Vmn1r20 by interacting with the pheromone receptor domain. It stimulates pheromone binding activity, initiating signal transduction cascades and leading to the up-regulation of Vmn1r20 expression. This supports its integral role in chemosensory communication, specifically in the recognition and reception of pheromones. | ||||||
Linalool | 78-70-6 | sc-250250 sc-250250A sc-250250B | 5 g 100 g 500 g | $47.00 $72.00 $110.00 | ||
Linalool functions as a direct activator of Vmn1r20 by interacting with the pheromone binding domain. It stimulates pheromone binding activity, initiating intracellular signaling cascades and up-regulating Vmn1r20 expression. This contributes to its integral role within the plasma membrane in chemosensory communication, particularly in the recognition and reception of pheromones. | ||||||
Hexanal | 66-25-1 | sc-252885 | 2 ml | $27.00 | ||
Hexanal serves as a direct activator of Vmn1r20 by binding to the pheromone receptor domain. It enhances pheromone receptor activity, triggering intracellular responses and leading to the up-regulation of Vmn1r20 expression. This supports its crucial role within the plasma membrane in chemosensory communication, specifically in the recognition and reception of pheromones. | ||||||
Geranyl acetate | 105-87-3 | sc-235243 | 25 g | $41.00 | ||
Geranyl acetate acts as a direct activator of Vmn1r20 by interacting with the pheromone binding domain. It stimulates pheromone binding activity, initiating intracellular signaling cascades and up-regulating Vmn1r20 expression. This contributes to its integral role within the plasma membrane in chemosensory communication, specifically in the recognition and reception of pheromones. | ||||||
Vanillin | 121-33-5 | sc-251423 sc-251423A | 100 g 500 g | $44.00 $124.00 | 1 | |
Vanillin serves as a direct activator of Vmn1r20 by binding to the pheromone receptor, triggering receptor activation. It enhances pheromone receptor activity, leading to up-regulation of Vmn1r20 expression and supporting its essential role in chemosensory communication through pheromone binding and reception within the plasma membrane. | ||||||
Methyl butyrate | 623-42-7 | sc-215339 sc-215339A | 1 kg 5 kg | $97.00 $214.00 | ||
Methyl butyrate functions as a direct activator of Vmn1r20 by interacting with the pheromone binding domain. It stimulates pheromone binding activity, initiating intracellular signaling cascades and up-regulating Vmn1r20 expression. This contributes to its integral role within the plasma membrane in chemosensory communication, specifically in the recognition and reception of pheromones. | ||||||
Methyl Salicylate | 119-36-8 | sc-204802 sc-204802A | 250 ml 500 ml | $47.00 $70.00 | ||
Methyl salicylate acts as a direct activator of Vmn1r20 by binding to the pheromone receptor domain. It enhances pheromone receptor activity, triggering intracellular responses and leading to the up-regulation of Vmn1r20 expression. This supports its crucial role within the plasma membrane in chemosensory communication, specifically in the recognition and reception of pheromones. | ||||||
Benzyl acetate | 140-11-4 | sc-252427 | 100 g | $30.00 | 1 | |
Benzyl acetate serves as a direct activator of Vmn1r20 by interacting with the pheromone binding domain. It stimulates pheromone binding activity, initiating intracellular signaling cascades and up-regulating Vmn1r20 expression. This contributes to its integral role within the plasma membrane in chemosensory communication, specifically in the recognition and reception of pheromones. | ||||||