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Results for "

receptor binding domain

" in MedChemExpress (MCE) Product Catalog:

58

Inhibitors & Agonists

7

Peptides

14

Inhibitory Antibodies

2

Recombinant Proteins

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-P99435

    BRII-196

    SARS-CoV Infection
    Amubarvimab (BRII-196) is a human IgG1 mAb that bind to non-competing epitopes on the receptor binding domain (RBD) of spike protein, with a KD of 5.88 nM. Amubarvimab can effectively neutralize SARS-CoV-2 variants .
    Amubarvimab
  • HY-138283
    MR837
    1 Publications Verification

    Histone Methyltransferase Cancer
    MR837 is an inhibitor of NSD2-PWWP1. MR837 can bind with human nuclear receptor binding SET domain protein 2 (PWWP domain) .
    MR837
  • HY-P99556

    AZD8895

    SARS-CoV Infection
    Tixagevimab (AZD8895) is a human monoclonal antibody that targets the SARS-CoV-2 receptor binding domain (RBD). It exhibits neutralizing activity against SARS-CoV-2 by binding to the RBD and the S-glycoprotein ectodomain and blocking S-glycoprotein-mediated binding to the receptor .
    Tixagevimab
  • HY-138067

    SARS-CoV Inflammation/Immunology
    SSAA09E2 is an inhibitor of SARS-CoV (Severe acute respiratory syndrome-Coronavirus) replication, acting by blocking early interactions of SARS-S with the receptor for SARS-CoV, Angiotensin Converting Enzyme-2 (ACE2) .
    SSAA09E2
  • HY-P99104

    COVI-AMG; STI-2020

    SARS-CoV Infection
    Plutavimab a human IgG1-κ anti-SARS-CoV-2 antibody, targeting to Spike (S) glycoprotein receptor binding domain (RBD) .
    Plutavimab
  • HY-P99969

    EGFR Cancer
    Inetetamab is a monoclonal antibody binding to domain IV of HER2 receptor. Inetetamab alone or together with tyrosine kinase inhibitors has antitumor activities .
    Inetetamab
  • HY-P3343A

    Estrogen Receptor/ERR Cancer
    hFSH-β-(33-53) TFA, a thiol-containing peptide which corresponds to a second FSH receptor-binding domain, is a FSHR (follicle-stimulating hormone receptor) antagonist. hFSH-β-(33-53) TFA inhibits binding of FSH to receptor and is a partial agonist of estradiol synthesis in Sertoli cells .
    hFSH-β-(33-53) (TFA)
  • HY-23999

    LOX-1 Cardiovascular Disease
    BI-0115 is a selective inhibitor of LOX-1 (IC50=5.4 µM) that blocks cellular uptake of oxLDL. BI-0115 binding triggers receptor inhibition by formation of dimers of the homodimeric ligand binding domain .
    BI-0115
  • HY-10799
    EG00229
    5+ Cited Publications

    Complement System Cancer
    EG00229 is a neuropilin 1 (NRP1) receptor antagonist. EG00229 selectively inhibits VEGF-A binding to NRP1 b1 domain with an IC50 of 3 μM, but has no effect on VEGFA binding to VEGFR-1 and VEGFR-2 .
    EG00229
  • HY-P990052

    MAD-0004J08

    SARS-CoV Infection
    Simaravibart (MAD-0004J08) is an IgG1κ antibody targeting the SARS-CoV2 spike (S) glycoprotein receptor binding domain .
    Simaravibart
  • HY-109176
    Giredestrant
    3 Publications Verification

    GDC-9545; RG6171

    Estrogen Receptor/ERR Cancer
    Giredestrant (GDC-9545), a non-steroidal estrogen receptor (ER) ligand, is an orally active and selective ER antagonist. Giredestrant potently competes with Estradiol for binding and induces a conformational change within the ER ligand binding domain. Giredestrant has anti-tumor activity .
    Giredestrant
  • HY-100691
    NOD-IN-1
    5+ Cited Publications

    NOD-like Receptor (NLR) Inflammation/Immunology
    NOD-IN-1 is a potent mixed inhibitor of nucleotide-binding oligomerization domain (NOD)-like receptors, NOD1 and NOD2, with IC50 of 5.74 μM and 6.45 μM, respectively.
    NOD-IN-1
  • HY-135903

    GDC-9545 tartrate; RG6171 tartrate

    Estrogen Receptor/ERR Cancer
    Giredestrant tartrate (GDC-9545 tartrate), a non-steroidal ER ligand, is an orally active and selective estrogen receptor (ER) antagonist. Giredestrant tartrate potently competes with estradiol for binding and induces a conformational change within the ER ligand binding domain. Anti-tumor activity .
    Giredestrant tartrate
  • HY-P9806

    MERS-D12; MERS Antibody-D12

    SARS-CoV Infection
    Anti-MERS-D12 mAb (MERS-D12; MERS Antibody-D12) is a human monoclonal IgG1. Anti-MERS-D12 mAb binds directly to the DPP4 interacting region of the MERS-CoV Spike receptor binding domain (RBD) and effect neutralization by directly blocking receptor binding .
    Anti-MERS-D12 mAb
  • HY-145641

    BMS-986413; C-144-LS

    SARS-CoV Infection
    Crexavibart (BMS-986413; C-144-LS) is an IgG1λ2 antibody that targets the SARS-CoV2 spike (S) glycoprotein receptor-binding domain .
    Crexavibart
  • HY-110392

    Estrogen Receptor/ERR Cancer
    CMP8, a selective ligand for estrogen receptor, binds to the mutant estrogen receptor ligand binding domain (ERLBD). CMP8 exhibits IC50 values of 29 nM , 41 nM, 1100 nM and 2200 nM for MGERα, MGRERα, hERα and hERβ, respectively .
    CMP8
  • HY-13956
    Pioglitazone
    Maximum Cited Publications
    25 Publications Verification

    U 72107

    PPAR Ferroptosis Metabolic Disease Cancer
    Pioglitazone (U 72107) is an orally active and selective PPARγ (peroxisome proliferator-activated receptor) agonist with high affinity binding to the PPARγ ligand-binding domain with EC50 of 0.93 and 0.99 μM for human and mouse PPARγ, respectively. Pioglitazone can be used in diabetes research .
    Pioglitazone
  • HY-13956B

    U 72107 potassium

    PPAR Ferroptosis Metabolic Disease Cancer
    Pioglitazone (U 72107) potassium is an orally active and selective PPARγ (peroxisome proliferator-activated receptor) agonist with high affinity binding to the PPARγ ligand-binding domain with EC50 of 0.93 μM and 0.99 μM for human and mouse PPARγ, respectively. Pioglitazone potassium can be used in diabetes research .
    Pioglitazone potassium
  • HY-P1396

    G Protein-coupled Receptor Kinase (GRK) Others
    GRK2i is a Gβγ-inhibitory peptide that selectively prevents Gβγ-mediated signaling. GRK2i corresponds to the Gβγ-binding domain of GRK2 (G-protein-coupled receptor kinase 2) .
    GRK2i
  • HY-14422
    SR1078
    10+ Cited Publications

    ROR Cancer
    SR1078 is a selective agonist of retinoic acid receptor-related orphan receptor α/γ (RORα/RORγ). SR1078 directly binds to the ligand binding domain of RORα and RORγ and increases the transcriptional activity of these receptors, leading to stimulation of RORα/γ target gene transcription .
    SR1078
  • HY-151101

    PROTACs Cancer
    MS159 is a potent nuclear receptor binding SET structural domain protein 2 (NSD2) PROTACdegrader. MS159 inhibits the growth of tumour cells. MS159 is a useful chemical tool for exploring the role of NSD2 in health and disease .
    MS159
  • HY-117669

    Androgen Receptor Cancer
    VPC-14228 is a potent androgen receptor DNA binding domain (AR-DBD) inhibitor that interferes with the interaction of AR with androgen response elements and effectively blocks AR transcriptional activity. VPC-14228 can be used in prostate cancer research .
    VPC-14228
  • HY-P99346

    CT-P59

    SARS-CoV Angiotensin-converting Enzyme (ACE) Infection
    Regdanvimab (CT-P59) is a human monoclonal antibody that targets the receptor-binding domain of SARS-CoV-2 spike protein, blocking interaction with ACE2 for viral entry. Regdanvimab can be used for the research of COVID-19 .
    Regdanvimab
  • HY-P99467

    BMS 4182137; VIR 7832

    SARS-CoV Infection
    Beludavimab (BMS 4182137; VIR 7832) is a monoclonal antibody targeting the spike glycoprotein of SARS-CoV-2. Beludavimab binds to recombinant spike protein receptor-binding domain (S-RBD) with an EC50 value of 14.9 ng/mL and a Kd of 0.21 nM .
    Beludavimab
  • HY-132205

    Estrogen Receptor/ERR Metabolic Disease
    DS45500853 is an estrogen-related receptor α (ERRα) agonist. DS45500853 inhibits the binding between receptor-interacting protein 140 (RIP140) corepressor peptide (10 nM) and GST-ERRα ligand-binding domain (LBD; 1.2 μM) with an IC50 value of 0.80 μM. DS45500853 can be used for the research of metabolic disorders, including type 2 diabetes mellitus (T2DM) .
    DS45500853
  • HY-143201

    Estrogen Receptor/ERR Metabolic Disease
    DS20362725 is an estrogen-related receptor α (ERRα) agonist. DS20362725 inhibits the binding between receptor-interacting protein 140 (RIP140) corepressor peptide (10 nM) and GST-ERRα ligand-binding domain (LBD; 1.2 μM) with an IC50 value of 0.6 μM. DS20362725 can be used for the research of metabolic disorders, including type 2 diabetes mellitus (T2DM) .
    DS20362725
  • HY-114208A

    Histone Methyltransferase Cancer
    BI-9321 trihydrochloride is a potent, selective and cellular active nuclear receptor-binding SET domain 3 (NSD3)-PWWP1 domain antagonist with a Kd value of 166 nM. BI-9321 trihydrochloride is inactive against NSD2-PWWP1 and NSD3-PWWP2. BI-9321 trihydrochloride specifically disrupts histone interactions of the NSD3-PWWP1 domain with an IC50 of 1.2 μM in U2OS cells .
    BI-9321 trihydrochloride
  • HY-114208

    Histone Methyltransferase Cancer
    BI-9321 is a potent, selective and cellular active nuclear receptor-binding SET domain 3 (NSD3)-PWWP1 domain antagonist with a Kd value of 166 nM. BI-9321 is inactive against NSD2-PWWP1 and NSD3-PWWP2. BI-9321 specifically disrupts histone interactions of the NSD3-PWWP1 domain with an IC50 of 1.2 μM in U2OS cells .
    BI-9321
  • HY-P0295

    GRGDS

    Integrin Others
    Gly-Arg-Gly-Asp-Ser is a pentapeptide that forms the cell-binding domain of a glycoprotein, osteopontin. Gly-Arg-Gly-Asp-Ser binds to integrin receptors αvβ3 and αvβ5 with estimated IC50 of ∼5 and ∼6.5 μM
    Gly-Arg-Gly-Asp-Ser
  • HY-137818

    Estrogen Receptor/ERR Cardiovascular Disease
    SR19881 is a potent dual agonist of ERRγ and ERRβ, with EC50 values of 0.39 and 0.63 μM, respectively .
    SR19881
  • HY-P0295A

    GRGDS TFA

    Integrin Inflammation/Immunology
    Gly-Arg-Gly-Asp-Ser (TFA) is a pentapeptide that forms the cell-binding domain of a glycoprotein, osteopontin . Gly-Arg-Gly-Asp-Ser binds to integrin receptors αvβ3 and αvβ5 with estimated IC50 of ∼5 and ∼6.5 μM .
    Gly-Arg-Gly-Asp-Ser TFA
  • HY-P99155

    EGFR Cancer
    Zalutumumab is a high affinity, completely human IgG1 monoclonal antibody targeting EGFR. Zalutumumab binds to domain III of the EGF receptor and acts by blocking the binding of EGF and by sterically interfering with the active conformation of the receptor. Zalutumumab binds with IgG and its Fab fragment with EC50s of 7 and 19 nM, respectively. Zalutumumab can be used for the research of cancer .
    Zalutumumab
  • HY-P0316

    Thrombin NO Synthase Cardiovascular Disease
    TP508 is a 23-amino acid nonproteolytic thrombin peptide that represents a portion of the receptor-binding domain of thrombin molecule. TP508 activates endothelial NO synthase (eNOS) and stimulates production of NO in human endothelial cells. TP508 activates endothelial cells and stem cells to revascularize and regenerate tissues .
    TP508
  • HY-P0316A

    Thrombin NO Synthase Cardiovascular Disease
    TP508 TFA is a 23-amino acid nonproteolytic thrombin peptide that represents a portion of the receptor-binding domain of thrombin molecule. TP508 TFA activates endothelial NO synthase (eNOS) and stimulates production of NO in human endothelial cells. TP508 TFA activates endothelial cells and stem cells to revascularize and regenerate tissues .
    TP508 TFA
  • HY-136242

    Androgen Receptor Endocrinology Cancer
    UT-34 is a potent, selective and orally active second-generation pan-androgen receptor (AR) antagonist and degrader with IC50s of 211.7 nM, 262.4 nM and 215.7 nM for wild-type, F876L and W741L AR, respectively. UT-34 binds to ligand-binding domain (LBD) and function-1 (AF-1) domains and requires ubiquitin proteasome pathway to degrade the AR. UT-34 has anti-prostate cancer efficacy .
    UT-34
  • HY-P99339

    IMCgp100

    Interleukin Related TNF Receptor Cancer
    Tebentafusp (IMCgp100) is a bispecific fusion protein to target gp100 peptide-HLA-A*02:01 (a melanoma-associated antigen). Tebentafusp guides T cells to kill gp100-expressing tumor cells via a high affinity T-cell receptor (TCR) binding domain and an anti-CD3 T-cell engaging domain. Tebentafusp leads to inflammatory cytokines and cytolytic proteins production, resulting in the direct lysis of tumour cells .
    Tebentafusp
  • HY-115739

    Ras Neurological Disease Cancer
    RTIL 13 is a potent inhibitor of dynamin GTPase, with an IC50 of 2.3 µM for dynamin I GTPase. RTIL 13 also targets pleckstrin homology lipid binding domain. RTIL 13 can inhibit receptor-mediated and synaptic vesicle endocytosis, with IC50s of 9.3 μM and 7.1 μM, respectively .
    RTIL 13
  • HY-103565

    mGluR Neurological Disease
    AMN082, a selective, orally active, and brain penetrant mGluR7 agonist, directly activates receptor signaling via an allosteric site in the transmembrane domain. AMN082 potently inhibits cAMP accumulation and stimulates GTPγS binding (EC50 values, 64-290 nM) at transfected mammalian cells expressing mGluR7. AMN082 shows selectivity over other mGluR subtypes and selected ionotropic glutamate receptors. Antidepressant effects .
    AMN082
  • HY-116501

    Androgen Receptor Cancer
    VPC-14449 is a potent and selective inhibitor of the DNA-binding domain of the androgen receptor (AR-DBD), with IC50 of 0.34 μM for full-length human AR. VPC-14449 reduces the ability of full-length AR as well as AR variants to interact with chromatin. VPC-14449 can be used for the research of prostate cancer .
    VPC-14449
  • HY-120087

    HIF/HIF Prolyl-Hydroxylase Cancer
    KG-548 is an ARNT/TACC3 disruptor and a HIF-1α inhibitor. KG-548 directly interferes with ARNT/TACC3 complex formation by competing with TACC3 for binding to the ARNT PAS-B domain. ARNT is the aryl hydrocarbon receptor nuclear translocator, also known as HIF-β .
    KG-548
  • HY-122611

    Androgen Receptor Apoptosis Cancer
    CSRM617 is a selective small-molecule inhibitor of the transcription factor ONECUT2 (OC2, a master regulator of androgen receptor) with a Kd of 7.43 uM in SPR assays, binding to OC2-HOX domain directly. CSRM617 induces apoptosis by appearance of cleaved Caspase-3 and PARP. CSRM617 is well tolerated in the prostate cancer mouse model
    CSRM617
  • HY-122611A
    CSRM617 hydrochloride
    1 Publications Verification

    Androgen Receptor Apoptosis Cancer
    CSRM617 hydrochloride is a selective small-molecule inhibitor of the transcription factor ONECUT2 (OC2, a master regulator of androgen receptor) with a Kd of 7.43 uM in SPR assays, binding to OC2-HOX domain directly. CSRM617 hydrochloride induces apoptosis by appearance of cleaved Caspase-3 and PARP. CSRM617 hydrochloride is well tolerated in the prostate cancer mouse model
    CSRM617 hydrochloride
  • HY-103565A

    mGluR Neurological Disease
    AMN082 free base, a selective, orally active, and brain penetrant mGluR7 agonist, directly activates receptor signaling via an allosteric site in the transmembrane domain. AMN082 free base potently inhibits cAMP accumulation and stimulates GTPγS binding (EC50 values, 64-290 nM) at transfected mammalian cells expressing mGluR7. AMN082 free base shows selectivity over other mGluR subtypes and selected ionotropic glutamate receptors. Antidepressant effects .
    AMN082 free base
  • HY-157251

    Histone Methyltransferase Cancer
    UNC8153 TFA is a potent and selective nuclear receptor-binding SET domain-containing 2 (NSD2)-targeted degrader with a Kd of 24 nM. UNC8153 TFA reduces the cellular levels of both NSD2 protein and the H3K36me2 chromatin mark. UNC8153 TFA contains a simple warhead that confers proteasome-dependent degradation of NSD2 .
    UNC8153 TFA
  • HY-145644

    C-135-LS; BMS-986414

    SARS-CoV Infection
    Ogalvibart (C-135-LS) is a human anti-SARS-CoV-2 monoclonal antibody (IgG1 type). Ogalvibart binds to the spike (S) glycoprotein receptor-binding domain (RBD) of SARS-CoV-2. Ogalvibart in combination with C144LS (1:1 ratio) shows good preventive activity and can effectively block the development of COVID19 in a rhesus monkey disease model .
    Ogalvibart
  • HY-50867
    Lestaurtinib
    3 Publications Verification

    CEP-701; KT-5555

    JAK FLT3 Trk Receptor Apoptosis STAT Cancer
    Lestaurtinib (CEP-701) is an orally active and selective RPTKs (receptor protein tyrosine kinase) inhibitor, competitively inhibits ATP binding to the TrkA/B/C domain. Lestaurtinib inhibits RPTKs phosphorylation, with IC50s of 2, 25 and 0.9 nM for FLT3, TrkA and JAK2, respectively. Lestaurtinib induces apoptosis and cycle arrest, also can inhibit growth of tumor .
    Lestaurtinib
  • HY-P2264

    Ephrin Receptor Inflammation/Immunology
    KYL peptide, an antagonistic peptide, selectively targets EphA4 receptor (IC50:4.22 μM, Kd:1.3 μM). KYL peptide binds to the ligand-binding domain of EphA4, effectively alleviates Aβ-induced synaptic dysfunction and synaptic plasticity defects in AD mice. KYL peptide can promote nerve regeneration after injury and modulating immune responses .
    KYL peptide
  • HY-122742

    iGluR Neurological Disease
    HBT1 is a potent α-Amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA) receptor (AMPA-R) potentiator. HBT1 bonds with S518 in the ligand-binding domain (LBD) of AMPA-R in a glutamate-dependent manner. HBT1 did not show remarkable bell-shaped response in brain-derived neurotrophic factor (BDNF) production in primary neurons .
    HBT1
  • HY-144120

    SARS-CoV Infection
    αGalCer-RBD is a self-adjuvanting lipoprotein conjugate. αGalCer-RBD induces potent immunity against SARS-CoV-2 and its variants of concern. αGalCer-RBD conjugate induces RBD-specific, cytokine-producing T cell development. αGalCer-RBD has great potential to be an effective COVID-19 vaccine candidate. α-Galactosylceramide (αGalCer) is a potent invariant natural killer T cell (iNKT) agonist . RBD: receptor-binding domain
    αGalCer-RBD
  • HY-P99165

    IGF-1R TSH Receptor Endocrinology
    Teprotumumab is an IGF-1 receptor (IGF-1R) blocking human monoclonal antibody. Teprotumumab binds to the ligand binding extracellular α-subunit domain of IGF-1R. Teprotumumab inhibits TSH and IGF-1 action in fibrocytes. Teprotumumab attenuates TSH-dependent IL-6 and IL-8 expression and Akt phosphorylation. Teprotumumab can be used for thyroid-associated ophthalmopathy research .
    Teprotumumab

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