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Results for "

Gs/cAMP

" in MedChemExpress (MCE) Product Catalog:

9

Inhibitors & Agonists

5

Peptides

1

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-141495
    (Rac)-Razpipadon
    1 Publications Verification

    PW0464

    Dopamine Receptor Neurological Disease
    PW0464, a nanomolar potent complete G protein biased ligand, is a noncatechol D1R agonist, with an EC50 of 5.8 nM (Gs-cAMP) .
    (Rac)-Razpipadon
  • HY-119486A

    (Rac)-PF-06649751; (Rac)-CVL-751

    Dopamine Receptor Arrestin Neurological Disease
    (Rac)-Tavapadon ((Rac)-PF-06649751) is a potent and selective noncatechol dopamine D1 receptor agonist. (Rac)-Tavapadon displays potent full agonism in the GS activation assay as well as partial agonism in the β-arrestin2 recruitment assay (GS-cAMP, EC50=0.8 nM; β-arrestin2, EC50=68 nM). (Rac)-Tavapadon has antiparkinsonian activity .
    (Rac)-Tavapadon
  • HY-108742
    Abaloparatide
    1 Publications Verification

    BA 058; BIM 44058

    PTHR Arrestin Metabolic Disease Cancer
    Abaloparatide (BA 058) is a parathyroid hormone receptor 1 (PTHR1) analog. Abaloparatide also is a selective PTHR1 activator. Abaloparatide enhances Gs/cAMP signaling and β-arrestin recruitment. Abaloparatide enhances bone formation and cortical structure in mice. Abaloparatide has the potential for the research of osteoporosis .
    Abaloparatide
  • HY-108742A
    Abaloparatide TFA
    1 Publications Verification

    BA 058 TFA; BIM 44058 TFA

    Arrestin PTHR Metabolic Disease Endocrinology Cancer
    Abaloparatide TFA (BA 058 TFA) is a parathyroid hormone receptor 1 (PTHR1) analogue. Abaloparatide TFA also is a selective PTHR1 activator. Abaloparatide TFA enhances Gs/cAMP signaling and β-arrestin recruitment. Abaloparatide TFA enhances bone formation and cortical structure in mice. Abaloparatide TFA has the potential for the research of osteoporosis .
    Abaloparatide TFA
  • HY-P10365

    Adhesion G Protein-coupled Receptors (AGPCRs) Others
    Vmm-p15 is a peptide agonist optimized for the adhesion G protein-coupled receptor GPR64 (also known as ADGRG2 or HE6). The affinity of VPM-p15 with GPR64 is significantly higher than that of the original p15 peptide. The cAMP level induced by VMM-P15 increased significantly, activated GPR64, and triggered downstream Gs, Gq, and G12/13 signaling. VPM-p15 can be used to study the activation mechanism of adherent GPCR family members .
    VPM-p15
  • HY-P3570

    Lom-AKH-II

    Endogenous Metabolite Metabolic Disease
    Adipokinetic hormone II (Locusta migratoria) (Lom-AKH-II) is a insect adipokinetic hormone (AKH), enhances fat body cAMP levels in vitro. Insect adipokinetic hormones (AKHs) controls flight-directed mobilization of carbohydrate and lipid from fat body stores, which depends on AKH receptor(s) coupling to cAMP formation and glycogen phosphorylase activation via the stimulatory guanine nucleotide-binding protein (Gs) .
    Adipokinetic hormone II (Locusta migratoria)
  • HY-P3572

    Lom-AKH-I

    Endogenous Metabolite Endocrinology
    Adipokinetic hormone I (Locusta migratoria) (Lom-AKH-I) is a insect adipokinetic hormone (AKH), enhances fat body cAMP levels in vitro. Insect adipokinetic hormones (AKHs) controls flight-directed mobilization of carbohydrate and lipid from fat body stores, which depends on AKH receptor(s) coupling to cAMP formation and glycogen phosphorylase activation via the stimulatory guanine nucleotide-binding protein (Gs) .
    Adipokinetic hormone I (Locusta migratoria)
  • HY-W394717

    PGN 1531

    Prostaglandin Receptor PKA Others
    BGC-20-1531 (PGN 1531), a benzenesulfonamide derivative, is a selective EP4 antagonist. BGC-20-1531 binds to PGE2 enhancing the ATPase activity, which are coupled to Gs proteins and thus activate adenylate cyclase generating cAMP and activating PKA. BGC-20-1531 is promising for research of liver disorders .
    BGC-20-1531
  • HY-N15721

    Trp-CA

    Orphan GPCR Metabolic Disease
    Tryptophan-cholic acid (Trp-CA) is a microbial amino-acid-conjugated bile acid, serving as an endogenous ligand and agonist of the orphan G protein-coupled receptor (GPCR) MRGPRE. Tryptophan-cholic acid activates MRGPRE, promoting the secretion of glucagon-like peptide-1 (GLP-1) through the Gs-cAMP and β-arrestin-1-ALDOA signaling pathways, thereby improving glucose tolerance in diabetic mice. Tryptophan-cholic acid is promising for research of type 2 diabetes .
    Tryptophan-cholic acid

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