Date published: 2025-9-15

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Olfr790 Inhibitors

Olfr790, a member of the olfactory receptor family, plays a central role in the olfactory sensory system's intricate process of detecting and transducing odorant signals. This specific olfactory receptor, expressed on the surface of olfactory sensory neurons, is responsible for recognizing and discriminating various odorants in our environment. Olfr790 belongs to the G-protein-coupled receptor (GPCR) superfamily, characterized by its ability to initiate intracellular signaling upon ligand binding. The function of Olfr790 is rooted in its interaction with odorant molecules, initiating a cascade of intracellular events. Upon binding, Olfr790 activates G-proteins, adenylate cyclase, and cyclic adenosine monophosphate (cAMP) production, leading to the generation of action potentials in olfactory neurons. These action potentials are then transmitted to the brain, where the perception of smell takes place. Olfr790's specificity in recognizing distinct odorants is crucial for our ability to distinguish a wide range of scents in our surroundings.

Inhibition of Olfr790 can occur through direct or indirect mechanisms, as illustrated by the list of chemicals provided earlier. Some inhibitors directly target Olfr790 by binding to its receptor site, preventing ligand binding and inhibiting olfactory signal transduction pathways. Others act indirectly by modulating key signaling pathways like the calcium signaling pathway or the cyclic nucleotide pathway, essential for Olfr790's proper functioning. These inhibitors disrupt the intricate cellular and molecular processes involved in olfactory signal transduction, leading to a reduction in Olfr790's activity and, consequently, a diminished ability to detect and transmit odorant signals. The study of Olfr790 and its inhibition contributes to a deeper understanding of olfaction and sensory perception.

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