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Results for "

allosteric mechanism

" in MedChemExpress (MCE) Product Catalog:

14

Inhibitors & Agonists

1

Inhibitory Antibodies

2

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-P99171

    Interleukin Related Inflammation/Immunology Cancer
    Gevokizumab is a potent anti-IL-1β antibody, negatively modulates IL-1β signaling through an allosteric mechanism. Gevokizumab selectively decreases the binding affinity of IL-1β for the IL-1 receptor type I (IL-1RI) signaling receptor instead of IL-1 counter-regulatory decoy receptor (IL-1 receptor type II) .
    Gevokizumab
  • HY-118967

    VU0183254

    Others Others
    VUANT1 (VU0183254) is an allosteric antagonist of insect odorant receptor ion channels, which has the activity of inhibiting insect odorant receptor signaling. VUANT1 can inhibit the activation of insect odorant receptors through allosteric regulation, which is important for the study of the molecular mechanism of insect olfactory signaling. Although it may be of limited use in insect control programs, it can be used as a pharmacological tool to study related mechanisms.
    VUANT1
  • HY-10250A

    TCN-P sodium

    ATP Synthase Metabolic Disease
    Triciribine phosphate sodium inhibits amidophosphoribosyltransferase by an allosteric mechanism which affects the first committed step of de novo purine biosynthesis. Triciribine phosphate sodium also inhibits IMP dehydrogenase which is the first committed step of guanosine nucleotide synthesis. Tricilibine phosphate does not affect ligase activity .
    Triciribine phosphate sodium
  • HY-16940

    24S-OHC; 24S-HC; Cerebrosterol

    LXR iGluR Endogenous Metabolite Metabolic Disease
    24(S)-Hydroxycholesterol (24S-OHC), the major brain cholesterol metabolite, plays an important role to maintain homeostasis of cholesterol in the brain. 24(S)-Hydroxycholesterol (24S-OHC) is one of the most efficient endogenous LXR agonist known and is present in the brain and in the circulation at relatively high levels. 24(S)-Hydroxycholesterol (24S-OHC) is a very potent, direct, and selective positive allosteric modulator of NMDARs with a mechanism that does not overlapthat of other allosteric modulators .
    24(S)-Hydroxycholesterol
  • HY-108708

    PARP Cancer
    GeA-69 is a selective, allosteric inhibitor of poly-adenosine-diphosphate-ribose polymerase 14 (PARP14) targeting macrodomain 2 (MD2), with a Kd value of 2.1 μM. GeA-69 involves in DNA damage repair mechanisms and prevents recruitment of PARP14 MD2 to sites of laser-induced DNA damage .
    GeA-69
  • HY-49444

    NF-κB E1/E2/E3 Enzyme Cancer
    EN450 is a cysteine-reactive covalent molecular glue degrader targeting NF-κB. EN450 interacts with allosteric C111 in the E2 ubiquitin ligase UBE2D. EN450 induces the ternary complex formation between UBE2D and NFKB1. EN450 exerts its anti-proliferative effects through a Cullin E3 ligase and proteasome-dependent mechanism .
    EN450
  • HY-161296

    Bacterial HIV Infection
    TH6342 is a SAMHD1 modulator that binds to pretetrameric SAMHD1 and prevents its oligomerization and allosteric activation. SAMHD1 is a dNTP triphosphohydrolase and an HIV-1 restriction factor. SAMHD1 can limit the replication of retroviruses and DNA viruses and has antiviral effects. The inhibitory mechanism of TH6342 does not occupy the SAMHD1 nucleotide-binding pocket, gently binds the target, and functions as a chemical probe .
    TH6342
  • HY-10250

    TCN-P

    ATP Synthase Metabolic Disease
    Triciribine phosphate (TCN-P) inhibits amidophosphoribosyltransferase by an allosteric mechanism which affects the first committed step of de novo purine biosynthesis. Triciribine phosphate also inhibits  IMP dehydrogenase which is the first committed step of guanosine nucleotide synthesis. Tricilibine phosphate does not affect ligase activity .
    Triciribine phosphate
  • HY-126158

    Dopamine Transporter Serotonin Transporter Neurological Disease
    SRI-29574 is an allosteric modulator of the dopamine transporter (DAT). SRI-29574 partially inhibits the uptake of the DAT (IC50=2.3 nM) and also partially inhibits the uptake of the serotonin transporter (SERT) and norepinephrine transporter (NET). SRI-29574 may serve as a useful probe to study the function and regulatory mechanisms of DAT .
    SRI-29574
  • HY-162401

    RXFP Receptor Cardiovascular Disease
    AZ7976 (Compound 42) is a highly selective agonist for the Relaxin Family Peptide Receptor 1 (RXFP1) (pEC50 > 10.5). AZ7976 enhances RXFP1's cAMP signaling through an allosteric mechanism, thereby physiologically increasing heart rate. AZ7976 can be used in the field of cardiovascular disease research .
    AZ7976
  • HY-110289

    Serotonin Transporter 5-HT Receptor Neurological Disease
    (R)-Citalopram oxalate is an anticonvulsant, antidepressant and muscle relaxant. (R)-Citalopram oxalate is at least 20-fold weaker than S-citalopram (Escitalopram; HY-14258) as inhibitor of the 5-HT transporter (SERT). (R)-Citalopram oxalate functionally antagonises S-citalopram in vivo and in vitro. (R)-Citalopram oxalate has an effect on the association of Escitalopram with the high affinity primary site, and on its dissociation from the 5-HT transporter, via an allosteric mechanism .
    (R)-Citalopram oxalate
  • HY-110289R

    Serotonin Transporter 5-HT Receptor Neurological Disease
    (R)-Citalopram (oxalate) (Standard) is the analytical standard of (R)-Citalopram (oxalate). This product is intended for research and analytical applications. (R)-Citalopram oxalate is an anticonvulsant, antidepressant and muscle relaxant. (R)-Citalopram oxalate is at least 20-fold weaker than S-citalopram (Escitalopram; HY-14258) as inhibitor of the 5-HT transporter (SERT). (R)-Citalopram oxalate functionally antagonises S-citalopram in vivo and in vitro. (R)-Citalopram oxalate has an effect on the association of Escitalopram with the high affinity primary site, and on its dissociation from the 5-HT transporter, via an allosteric mechanism .
    (R)-Citalopram oxalate (Standard)
  • HY-117106

    GABA Receptor Others
    PNU-107484A is a GABAA receptor ligand that exhibits target activity mechanisms dependent on α isoforms. In the α1β2γ2 subtype, PNU-107484A acts as a positive allosteric modulator, enhancing GABA-induced Cl - currents, while it inhibits the currents in the α3β2γ2 and α6β2γ2 subtypes. The half-maximal concentrations for the α1β2γ2, α3β2γ2, and α6β2γ2 subtypes are 3.1, 4.2, and 3.5 μM, respectively. PNU-107484A can be used as a probe to investigate the physiological roles of different α isoform subtypes .
    PNU-107484A
  • HY-116275

    Others Cancer
    KRM-II-81 is a gamma-aminobutyric acid type A (GABAA) receptor ligand with analgesic, anxiolytic and anti-epileptic activities. KRM-II-81 exhibits positive allosteric modulation of GABAA receptors selective for the α2/3 subunit. KRM-II-81 reduces formalin-induced pain response after oral administration. KRM-II-81 significantly reduces pain behavior induced by chronic spinal nerve ligation. Analysis of KRM-II-81 showed that its plasma and brain concentrations were positively correlated with analgesic effects. The enhancement effect of KRM-II-81 on GABA current shows its key role in the analgesic mechanism. KRM-II-81 was less effective in respiratory depression, demonstrating its safety and tolerability .
    KRM-II-81

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