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GPCR/G protein

GPCRs (G-protein coupled receptors) are a major subcategory of signaling pathways that play a crucial role in transmitting signals from outside the cell to within. These receptors are involved in a wide range of physiological processes including sensory perception, neurotransmission, hormonal regulation, and immune responses.

When a ligand binds to a GPCR, it causes a conformational change in the receptor that activates an associated G-protein. The activated G-protein then triggers a cascade of intracellular signaling events that ultimately lead to a specific cellular response.

GPCRs are a diverse family of proteins that can be classified into different subtypes based on their structure and function. Some examples of GPCR subtypes include rhodopsin-like, secretin-like, and metabotropic glutamate receptors.

Dysregulation of GPCR signaling pathways has been implicated in a variety of diseases, including cancer, cardiovascular disorders, and neurological conditions. Therefore, understanding the mechanisms underlying GPCR/G protein signaling is essential for the development of novel therapeutics targeted at these pathways.

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MRS1523, C3068, C23H29NO3S, adenosine A3 receptor antagonist
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(R)-(+)-Atenolol, C3031, C14H22N2O3, less active enantiomer of the racemic β1-adrenergic receptor antagonist, (R,S)-atenolol.
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BW 245C, C3027, C19H32N2O5, DP1 receptor agonist
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L-Phenylephrine, C3021, C9H13NO2, adrenergic α1A receptor agonist
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Erythromycin A enol ether, C3019, C37H65NO12, β-turn mimic of the peptide hormone motilin
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(±)-Talinolol, C3003, C20H33N3O3, β1-selective adrenoceptor antagonist
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MK-571 sodium salt hydrate, B8031, C26H26ClN2NaO3S2·xH2O, CysLT1 receptor antagonist
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Pimavanserin, B8019, C25H34FN3O2, 5-HT2A inverse agonist
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NIBR189, B8010, C21H21BrN2O3, EBI2 (GPR183) receptor antagonist
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BKT140, B7833, C97H144FN33O19S2, CXCR4 antagonist

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