180 Results for "

dimerizes

" in MedChemExpress (MCE) Product Catalog:
Products (180)

180 Results for "dimerizes" in MCE Product Catalog:

Cat. No.: HY-149538
CAS No.: 1440532-33-1
Purity:  99.61%
Target:  

Potassium Channel

Research Areas:  

Neurological Disease

TWIK-1/TREK-1-IN-3 (compound 2h) is an inhibitor of TWIK-related potassium channel (Potassium Channel) TREK-1. TREK-1 contains a two-pore domain potassium (K2p) channel that dimerizes into TREK-1 homodimer and TWIK-1/TREK-1 heterodimer, and is an important antidepressant target. TWIK-1/TREK-1-IN-3 targets TREK-1 homodimer and TWIK-1/TREK-1 heterodimer with IC50s of 9.74 μM and 16.5 μM, respectively, and has antidepressant-like effects .
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Cat. No.: HY-152240
CAS No.: 2665734-13-2
Purity:  99.96%
Target:  

PD-1/PD-L1

Research Areas:  

Cancer

PD-1/PD-L1-IN-29 (S4-1) is a potent PD-1/PD-L1 inhibitor with an IC50 value of 6.1 nM. PD-1/PD-L1-IN-29 binds PD-L1 and disrupts PD-1/PD-L1 interactions, induces PD-L1 dimerization and internalization, improves its localization to the endoplasmic reticulum, and promotes PD-L1 entry into the endoplasmic reticulum. PD-1/PD-L1-IN-29 has anticancer activity .
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Cat. No.: HY-13636A
CAS No.: 1316849-17-8
Synonyms: ICI 182780 (S enantiomer); ZD 9238 (S enantiomer); ZM 182780 (S enantiomer)
Research Areas:  

Cancer

Fulvestrant (ICI 182780; ZD 9238) S enantiomer is the S-enantiomer of Fulvestrant (HY-13636), a potent estrogen receptor inhibitor. Fulvestrant binds to and blocks the estrogen receptor, promotes its degradation, and thereby inhibits receptor dimerization, nucleocytoplasmic shuttling and transcriptional activity. Fulvestrant effectively blocks estrogen signaling, MAPK pathway activation and ER-regulated protein expression. Fulvestrant induces apoptosis, inhibits the proliferation of breast cancer and prolactinoma cells, and reduces the mineralization level, alkaline phosphatase activity and osteocalcin expression of preosteoblasts. Prenatal exposure to Fulvestrant impairs ovarian follicular development and causes ovarian structural damage. Fulvestrant has been widely used in studies related to breast cancer, prolactinoma and other conditions .
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Cat. No.: HY-188081
CAS No.: 3112733-78-2
Research Areas:  

Cancer

YH-36400 is an orally bioavailable inhibitor of HIF-1α and HIF-2α. YH-36400 disrupts the dimerization of HIF-1α and HIF-1β and triggers proteasomal degradation, thereby inhibiting the transcriptional activities of HIF-1 and HIF-2. YH-36400 reduces the expression of PD-L1 and CD73, reprograms the tumor immune microenvironment, inhibits angiogenesis, and can be used in combination with immune checkpoint blockade therapy. YH-36400 is applicable to research related to breast cancer, lung cancer, melanoma, pancreatic cancer, colorectal cancer, prostate cancer, and head and neck squamous cell carcinoma .
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Cat. No.: HY-P4121
CAS No.: 1898254-09-5
Target:  

Potassium Channel

Research Areas:  

Inflammation/Immunology Cancer

L17E is an attenuated cationic amphiphilic lytic (ACAL) peptide that can be used to deliver a variety of macromolecules, including proteins, antibodies, and DNA nanostructures. L17E inserts and cleaves the membrane structure through electrostatic interaction, enabling intracellular escape. The efficiency of L17E-mediated delivery is strongly correlated with the expression level of KCNN4 (the gene encoding the calcium-activated potassium channel KCa3.1). L17E also promotes the cellular uptake of macromolecules by inducing micropinocytosis. L17E can be further optimized and improved through dimerization strategies and in combination with other delivery systems, such as nuclear localization signal peptides and cell membrane-coated nanoparticles .
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Cat. No.: HY-183276
Research Areas:  

Inflammation/Immunology

TLR8 antagonist-2 (Compound 35) is a selective TLR8 antagonist with an IC50 of 0.032 μM against hTLR8. TLR8 antagonist-2 potently inhibits TLR8-dependent NF-κB activity in cells stimulated with TL8-506 (HY-20457). TLR8 antagonist-2 can be used in research related to inflammatory and immune diseases .
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Cat. No.: HY-187168
CAS No.: 2407654-72-0
Research Areas:  

Cancer

KAT2A degrader-1 is a molecular glue degrader targeting KAT2A, with a DC50 of 89 nM in Kelly cells. KAT2A degrader-1 recruits KAT2A to cereblon (CRBN) in a degron-independent manner, forms a ternary complex with KAT2A and CRBN, and drives the polyubiquitination and proteasome-dependent degradation of KAT2A. KAT2A degrader-1 reduces the level of histone H3 lysine 9 acetylation (H3K9Ac). KAT2A degrader-1 induces antiproliferative effects in acute myeloid leukemia cells, while enhancing KAT2A-CRBN dimerization activity and eliminating the targeting effect on GSPT1. KAT2A degrader-1 can be used for research related to acute myeloid leukemia .
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Cat. No.: HY-L906
646 compounds

On May 15, 2024, "Dimerization and antidepressant recognition at noradrenaline transporter" was published online by Nature. The research findings were an effort from Shanghai Institute of Materia Medica, Chinese Academy of Sciences. This study unraveled the important neural system target - the noradrenaline transporter (NET), obtaining the binding modes of human NET homodimers with the natural substrate norepinephrine (NE) and six selective antidepressants. It laid an important theoretical foundation for understanding the physiological regulation mechanisms of NET and other monoamine transporters.

The Norepinephrine Transporter (NET) Compound Library is obtained by computer-aided virtual screening based on the HY-L901 compound library . The specific screening process includes molecular docking screening, key pharmacophore screening, and CNS-MPO screening, which can be used for new drug discovery targeting the noradrenaline transporter.

Cat. No.: HY-159922
Target:  

Androgen Receptor

Research Areas:  

Cancer

AR antagonist 9 is an orally bioavailable selective androgen receptor (AR) antagonist that exerts anticancer effects by disrupting the dimerization of AR ligand-binding domains, showing potential for overcoming drug resistance in prostate cancer (PCa). Its AR antagonistic activity has an IC50 value of 0.051 μM, comparable to Enzalutamide (HY-70002) (IC50 = 0.060 μM). AR antagonist 9 demonstrated superior efficacy against ARF876L/T877A and ARW741C mutants compared to Enzalutamide (HY-70002). Furthermore, AR antagonist 9 exhibited favorable pharmacokinetic properties, with an oral bioavailability of F = 66.24% in rats. In the LNCaP xenograft mouse model, oral administration of AR antagonist 9 significantly inhibited tumor growth. AR antagonist 9 holds promise for research into overcoming PCa drug resistance .
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Cat. No.: HY-P11580
Research Areas:  

Infection

Pap12-6-10 is an MD-2 ligand that binds to the hydrophobic pocket of MD-2 to inhibit the dimerization of the TLR4/MD-2 complex and downstream inflammatory signal transduction. Pap12-6-10 also binds to LPS to permeabilize bacterial cell membranes and induce oxidative stress, leading to bacterial death. Pap12-6-10 regulates LPS-induced inflammatory responses through the TLR4 signaling pathway and exhibits antibacterial activity against multidrug-resistant Gram-negative bacteria. Pap12-6-10 shows low tendency to induce drug resistance and low preclinical cytotoxicity, and it prevents organ damage in a mouse model of sepsis. Pap12-6-10 can be used for research related to Gram-negative sepsis and carbapenem-resistant Acinetobacter baumannii infections .
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Cat. No.: HY-125749
CAS No.: 41044-12-6
Coumarin-30 is a coumarin-based fluorescent dye and environment-sensitive fluorescent probe (in aqueous medium, λex = 430 nm, λem = 495 nm). Coumarin-30 serves as a dopant for organic light-emitting diodes .
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Cat. No.: HY-N15603
CAS No.: 261778-30-7
Synonyms: β-O-4 Dehydrodimer
G-(β-O-4)-S (β-O-4 Dehydrodimer) is an antioxidant lignan that is isolated from the fruits of Broussonetia papyrifera. G-(β-O-4)-S possesses antioxidant and free radical scavenging activities. G-(β-O-4)-S can be used for research on Alzheimer's disease .
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Cat. No.: HY-183370
Research Areas:  

Inflammation/Immunology

JAK2/STAT3-IN-2 is an orally active JAK2/STAT3 inhibitor. JAK2/STAT3-IN-2 inhibits the phosphorylation of tyrosine residues in JAK2 and STAT3, blocks downstream signal transduction, disrupts the dimerization and nuclear translocation of STAT3, and suppresses pro-inflammatory transcriptional activity. JAK2/STAT3-IN-2 inhibits the expression of IL-17A and IL-17F, reduces immune cell infiltration, and inhibits the production of NO simultaneously. JAK2/STAT3-IN-2 exerts a protective effect in a mouse model of ulcerative colitis induced by DSS (HY-116282C). JAK2/STAT3-IN-2 can be used for the research of ulcerative colitis .
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Cat. No.: HY-183583
CAS No.: 2709068-47-1
Research Areas:  

Cancer

HIF-2α-IN-18 is a selective HIF-2α inhibitor with a human IC50 of 8.1 nM. HIF-2α-IN-18 binds to the HIF-2α PAS-B domain, induces conformational perturbations at the HIF-2α/ARNT dimerization interface, destabilizes the HIF-2α/ARNT heterodimer, and blocks HIF-2α-mediated transcriptional activity. HIF-2α-IN-18 inhibits hypoxia-induced expression of HIF-2α target genes EPO and SERPINE1, without inhibiting HIF-1α target genes PGK1 and PDK1. HIF-2α-IN-18 can be used for the research of clear cell renal cell carcinoma, hepatocellular carcinoma[1].
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Cat. No.: HY-P991266

Research Areas:  

Inflammation/Immunology

SM-17 is a human monoclonal antibody targeting IL-17RB. SM-17 binds to human IL-17RB, inhibits the dimerization of IL-17RA/IL-17RB, blocks IL-25-induced phosphorylation of ERK1/2 and STAT5, and suppresses Th2-mediated inflammatory responses. SM-17 inhibits the secretion of IL-5, IL-9, IL-13 and IL-4, impairs the proliferation/expansion of ILC2 and Th2 cells, and restores filaggrin expression. SM-17 reduces immune cell infiltration, epidermal hyperplasia, goblet cell hyperplasia, collagen deposition, ear swelling and scratching behavior in animal models. SM-17 can be used in research related to atopic dermatitis and allergic asthma .
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Cat. No.: HY-P992200
Anti-CD146 Antibody (AA98) is an antibody targeting CD146 and an angiogenesis inhibitor. Anti-CD146 Antibody (AA98) blocks the dimerization of CD146 as well as its downstream PI3K/AKT, p38 MAPK and NF-κB signaling pathways; it inhibits the expression of MMP9 and ICAM1, epithelial-mesenchymal transition (EMT), and the proliferation, migration and tube formation of endothelial cells. Anti-CD146 Antibody (AA98) enhances radiation-induced cancer cell apoptosis and survival inhibition, reduces tumor microvessel density, and suppresses tumor growth, invasion and vasculogenic mimicry. Anti-CD146 Antibody (AA98) can be used in research related to cervical cancer, liver cancer, malignant phyllodes tumor of the breast, uveal melanoma, leiomyosarcoma, pancreatic cancer, other tumors and angiogenesis .
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Cat. No.: HY-L008
738 compounds

The Janus kinase (JAK)/signal transducer and activator of transcription (STAT) pathway is central to signaling by cytokine receptors, a superfamily of more than 30 transmembrane proteins that recognize specific cytokines, and is critical in blood formation and immune response. Canonical JAK/STAT signaling begins with the association of cytokines and their corresponding transmembrane receptors. Activated JAKs then phosphorylate latent STAT monomers, leading to dimerization, nuclear translocation, and DNA binding. In mammals, there are four JAKs (JAK1, JAK2, JAK3, TYK2) and seven STATs (STAT1, STAT2, STAT3, STAT4, STAT5a, STAT5b, STAT6). Since the JAK/STAT pathway plays a major role in many fundamental processes, such as apoptosis and inflammation, dysfunctional proteins in the pathway may lead to a number of diseases. For example, alterations in JAK/STAT signalling can result in cancer and diseases affecting the immune system, such as severe combined immunodeficiency disorder (SCID).

MCE provides 738 compounds that can be used in the study of the JAK/STAT signaling pathway and related diseases.

Cat. No.: HY-182380
CAS No.: 1632152-27-2
ODZ10117 is a STAT3 and NLRP3 inhibitor with a human STAT3 SH2 domain IC50 of 7.5 μM. ODZ10117 binds to the STAT3 SH2 domain, suppressing tyrosine phosphorylation, dimerization, nuclear translocation, and transcriptional activity. ODZ10117 binds to NLRP3, impairs NEK7 interaction, prevents inflammasome formation, and inhibits caspase-1 and IL-1β cleavage.ODZ10117 reduces MSU (HY-B2130A)-induced IL-1β release, lowers LPS (HY-D1056)-induced sepsis mortality, and exhibits anti-inflammatory effects. ODZ10117 induces apoptosis, suppresses breast cancer cell migration and invasion, reduces tumor growth and lung metastasis, and extends survival in breast cancer models. ODZ10117 can be used for the research of Monosodium urate (HY-B2130A)-induced peritonitis, LPS-induced sepsis, breast cancer, glioblastoma, and Alzheimer's disease .
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Cat. No.: HY-183765
Target:  

PARP Pyruvate Kinase

Research Areas:  

Cancer

PARP1/PKM2-IN-1 is a dual PARP1/PKM2 inhibitor, with an IC50 of 39.5 nM against PARP1, and IC50 values of 261 nM (recombinant PKM2) and 50 nM (dimeric PKM2) against PKM2. PARP1/PKM2-IN-1 reduces the dimerization of PKM2 and decreases its nuclear accumulation level. PARP1/PKM2-IN-1 also selectively downregulates PKM2 mRNA and impairs poly (ADP-ribose)-mediated nuclear retention of PKM2. PARP1/PKM2-IN-1 exhibits antiproliferative activity and inhibits the formation of 3D cancer spheroids. PARP1/PKM2-IN-1 can be used in research related to mammary adenocarcinoma, triple-negative breast cancer, BRCA1-mutant triple-negative breast cancer, and prostate adenocarcinoma .
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Cat. No.: HY-189126
CAS No.: 1240580-64-6
Research Areas:  

Cancer

YL064 is a multi-target STAT3-c-MYC inhibitor that directly binds to ATXN3 and inhibits its deubiquitinating activity, thereby promoting the ubiquitination and proteasomal degradation of oncogenic substrates of ATXN3. YL064 inhibits the phosphorylation of STAT3-Tyr705 without altering the total protein level of STAT3; meanwhile, it directly binds to the SH2 domain of STAT3 to block the dimerization, nuclear translocation, and DNA-binding activity of STAT3. YL064 directly targets the C-terminal HLH-Zip domain of c-Myc, upregulates the phosphorylation of c-Myc at the Thr58 site, and induces the ubiquitination and proteasome-dependent degradation of c-Myc. YL064 suppresses tumor cell proliferation, induces G2/M cell cycle arrest, reduces cell migration and invasion capacities, and triggers cancer cell apoptosis. YL064 can be used in related research on breast cancer, prostate cancer, diffuse large B-cell lymphoma, and multiple myeloma .
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