28 Results for "

D pockets

" in MedChemExpress (MCE) Product Catalog:
Products (28)

28 Results for "D pockets" in MCE Product Catalog:

58
58 Publications Verification
Art. -Nr.: HY-134813
CAS. Nr.: 2621928-55-8
Reinheit:  99.97%
Target:  

Ras

Forschungsgebiete:  

Cancer

MRTX1133 is a noncovalent, potent, and selective alkyne-based KRAS G12D inhibitor. MRTX1133 optimally fills the switch II pocket and extends three substituents to favorably interact with the protein, resulting in an estimated KD against KRAS G12D of 0.2 pM. MRTX1133 prevents SOS1-catalyzed nucleotide exchange and/or formation of the KRAS G12D/GTP/RAF1 complex, thereby inhibiting mutant KRAS-dependent signal transduction. MRTX1133 selectively inhibits KRAS G12D mutant, but not KRAS wild-type, tumor cells. MRTX1133 has single digit nanomolar activity in cellular assays and marked in vivo efficacy in tumor models harboring KRAS G12D mutations .
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9
9 Cited Publications
Art. -Nr.: HY-110287
CAS. Nr.: 300815-04-7
Reinheit:  99.62%
Target:  

APC Mitosis

Forschungsgebiete:  

Cancer

Apcin, a ligand of Cdc20, is a potent and competitive anaphase-promoting complex/cyclosome (APC/C(Cdc20)) E3 ligase activity inhibitor. Apcin competitively inhibits APC/C-dependent ubiquitylation by binding to Cdc20 and preventing substrate recognition. Apcin occupes the D-box-binding pocket on the side face of the WD40-domain and can prolong mitosis .
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Art. -Nr.: HY-126247
CAS. Nr.: 2375482-51-0
Reinheit:  99.57%
Target:  

Ras

Forschungsgebiete:  

Cancer

BI-2852 is a KRAS inhibitor for the switch I/II pocket (SI/II-pocket) by structure-based agent design with nanomolar affinity. BI-2852 is mechanistically distinct from covalent KRASG12C inhibitor (binds to switch II pocket) and binds ten-fold more strongly to active KRASG12D versus KRASwt (740 nM vs 7.5 μM). BI-2852 blocks GEF, GAP, and effector interactions with KRAS, leading to inhibition of downstream signaling and an antiproliferative effect in KRAS mutant cells.
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Art. -Nr.: HY-130841
CAS. Nr.: 1683617-62-0
Reinheit:  ≥98.0%
Forschungsgebiete:  

Cancer

Apcin-A is a small molecule inhibitor that selectively targets the cell division cycle protein Cdc20 and is a derivative of Apcin (HY-110287). Apcin-A competitively binds to the D-box binding pocket of Cdc20 and inhibits substrate ubiquitination mediated by the anaphase promoting complex APC/C-Cdc20. Apcin-A also blocks the binding of Cdc20 to substrates (such as securin and cyclin B1), inhibiting anaphase initiation and cell cycle exit. Apcin-A can promote or prolong mitotic slippage in coordination with p31 comet under conditions of high spindle assembly checkpoint (SAC) activity. Apcin-A can be used to develop anti-mitotic drugs and overcome tumor chemotherapy resistance. Apcin-A can be used to synthesize PROTAC CP5V (HY-130257)[1][2][3].
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Art. -Nr.: HY-174423
CAS. Nr.: 1994348-72-9
Synonyms: NC-656
Target:  

Herbicide HPPD

Forschungsgebiete:  

Others

Iptriazopyrid is a 4-hydroxyphenylpyruvate dioxygenase (HPPD) inhibitor, with a Ki value of 24.3 nM against Arabidopsis thaliana and 33.3 nM against Oryza sativa. Iptriazopyrid binds to the active pocket of HPPD, occupies the catalytic site, inhibits carotenoid biosynthesis, prevents chloroplast formation, and induces albino and chlorotic symptoms in sensitive plants. Used as a herbicide, Iptriazopyrid can control barnyardgrass when applied alone, and its efficacy does not decrease when mixed with labeled residual herbicides. When Iptriazopyrid is mixed with 2,4-D or triclopyr, its barnyardgrass control effect shows an antagonistic effect. Iptriazopyrid is a triazole carboxamide herbicide that exhibits selectivity for Oryza sativa over Echinochloa crus-galli, and has partial tank-mix compatibility with synthetic auxin herbicides registered for rice .
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Art. -Nr.: HY-126247B
CAS. Nr.: 2375482-49-6
Reinheit:  97.32%
Target:  

Drug Derivative Ras

Forschungsgebiete:  

Cancer

(R)-BI-2852 is the isomer of BI-2852 (HY-126247), and can be used as an experimental control. BI-2852 is a KRAS inhibitor for the switch I/II pocket (SI/II-pocket) by structure-based agent design with nanomolar affinity. BI-2852 is mechanistically distinct from covalent KRASG12C inhibitor (binds to switch II pocket) and binds ten-fold more strongly to active KRASG12D versus KRASwt (740 nM vs 7.5 μM). BI-2852 blocks GEF, GAP, and effector interactions with KRAS, leading to inhibition of downstream signaling and an antiproliferative effect in KRAS mutant cells.
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Art. -Nr.: HY-161066
Target:  

Ras

Forschungsgebiete:  

Cancer

KRAS G13D-IN-1 (Compound 41) is a selective and covalently reversible inhibitor of KRAS G13D (IC50: 0.41 nM). The selectivity for KRAS G13D is 29-fold against KRAS wild type. KRAS G13D-IN-1 is an inhibitor of the GDP state and targets the SWII binding pocket of KRAS G13D. KRAS G13D-IN-1 inhibits KRAS binding to GDP and turns on/off downstream signaling cascades. KRAS G13D-IN-1 can be used in the research of colon cancer .
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Art. -Nr.: HY-179241
Target:  

Dopamine Receptor

Forschungsgebiete:  

Neurological Disease

UNC10062 is a dopamine D1 receptor (D1R) positive allosteric modulator. UNC10062 specifically binds to the extracellular allosteric pocket (upper pocket) at the interface of transmembrane helices (TM) 1 and 7 of D1R. UNC10062 can increase dopamine potency and D1R-mediated cAMP production. UNC10062 can be used for the research of neurological disease, such as Parkinson's disease .
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Art. -Nr.: HY-134813A
Target:  

Ras

Forschungsgebiete:  

Cancer

MRTX1133 formic is a noncovalent, potent, and selective KRAS G12D inhibitor. MRTX1133 formic optimally fills the switch II pocket and extends three substituents to favorably interact with the protein, resulting in an estimated KD against KRAS G12D of 0.2 pM. MRTX1133 formic prevents SOS1-catalyzed nucleotide exchange and/or formation of the KRASG12D/GTP/RAF1 complex, thereby inhibiting mutant KRAS-dependent signal transduction. MRTX1133 formic shows efficacy in tumor models harboring KRAS G12D mutations .
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Art. -Nr.: HY-173275
Target:  

PDGFR

Forschungsgebiete:  

Cancer

PDGFRα kinase inhibitor 3 (Compound L7) is a highly potent inhibitor targeting the PDGFRα D842V kinase with IC50s values of 23.8 nM and 2.1 nM in biochemical and cellular assays, respectively. PDGFRα kinase inhibitor 3 binds to the ATP-binding pocket of PDGFRα D842V to block its downstream signaling pathways and inhibit kinase activity. PDGFRα kinase inhibitor 3 can be used for gastrointestinal stromal tumors (GISTs) study .
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Art. -Nr.: HY-W757743
Synonyms: ACP-196-d3
Acalabrutinib-d3 (ACP-196-d3) is the deuterated form of Acalabrutinib (HY-17600). Acalabrutinib (ACP-196) is an orally active, irreversible, highly selective second-generation BTK inhibitor. Acalabrutinib covalently binds to Cys481 in the ATP-binding pocket of BTK. Acalabrutinib shows strong targeting and efficacy in mouse models of chronic lymphocytic leukemia (CLL).
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Art. -Nr.: HY-130718
CAS. Nr.: 2408626-64-0
Target:  

Bacterial

Forschungsgebiete:  

Infection Cancer

ThrRS-IN-1 (Compound 30d) is a threonyl-tRNA synthetase (ThrRS) inhibitor with an IC50 of 1.4 µM and a Kd of 1.36 µM against Salmonella enterica ThrRS (SeThrRS). ThrRS-IN-1 simultaneously targets the tRNA Thr and L-threonine binding pockets of ThrRS. ThrRS-IN-1 shows potent antibacterial activities .
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Art. -Nr.: HY-B1221S
CAS. Nr.: 1185071-99-1
Flufenamic acid-d4 is deuterium labeled Flufenamic acid. Flufenamic acid is a non-steroidal anti-inflammatory agent, inhibits cyclooxygenase (COX), activates AMPK, and also modulates ion channels, blocking chloride channels and L-type Ca 2+ channels, modulating non-selective cation channels (NSC), activating K+ channels. Flufenamic acid binds to the central pocket of TEAD2 YBD and inhibits both TEAD function and TEAD-YAP-dependent processes, such as cell migration and proliferation.
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Art. -Nr.: HY-L949
1279 compounds

Spirocyclic compounds, with rigid 3D structures, high Fsp³ and strong conformational restriction, are highly privileged scaffolds in small-molecule drug screening. They overcome drawbacks of planar aromatic compounds such as poor solubility, high off-target risks and weak druggability. Their orthogonal bicyclic geometry fits well into protein pockets, improving target affinity, subtype selectivity, metabolic stability and membrane permeability, making them ideal for hit identification against kinases, GPCRs, PPIs and other targets.

Spirocyclic scaffolds have been widely applied in oncology, antivirals, hypertension and CNS diseases, leading to many approved drugs and clinical candidates. SAR studies show that spiro-atom chirality, ring size and heteroatom substitution dominate bioactivity and selectivity, with the scaffold mainly serving as a conformational anchor. Azaspirocycles, spirooxindoles and spirosteranes target GPCRs, kinases, MDM2-p53 and PPIs. Approved drugs including irbesartan, spironolactone and rolapitant confirm their druggability, while revumenib and SAR405838 show promise against undruggable targets.

The MCE Spirocyclic Druglike Library contains over 1,000 diverse, stereospecific molecules selected by Lipinski’s rules. It covers privileged cores such as azaspirocycles, oxaspirocycles and spirooxindoles. These molecules bear rich chiral centers and distinct 3D orientations, reducing non-specific binding and enhancing screening efficiency. Featuring novel scaffolds, the library offers a highly innovative starting point for drug discovery.

Art. -Nr.: HY-184372
CAS. Nr.: 720672-18-4
Target:  

Sirtuin

Forschungsgebiete:  

Cancer

SIRT1-IN-7 is a weak inhibitor of SIRT1 with an IC50 > 100 μM. SIRT1-IN-7 can be used in cancer-related research, such as breast cancer research .
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Art. -Nr.: HY-183926
CAS. Nr.: 384361-09-5
Target:  

HIV Integrase

Forschungsgebiete:  

Infection

D719 is an HIV-1 integrase inhibitor. D719 binds to the hydrophobic pocket of HIV-1 integrase CCD dimer, disrupts interaction with LEDGF/P75, and prevents integrase nuclear translocation. D719 reduces HIV-1 p24 antigen production in acute infection of human T cells. D719 can be used for the research of HIV infection .
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Art. -Nr.: HY-W387035
CAS. Nr.: 2799-15-7
Target:  

MHC

D-α-Methyl DOPA is an inhibitor of the binding of DQ8 peptide to MHC class II molecules. D-α-Methyl DOPA occupies a pocket along the DQ8 peptide binding groove. D-α-Methyl DOPA inhibits the binding of a DQ8 peptide to an MHC class II molecule for presentation to CD4 + T cells, thereby slowing the development or progression of type 1 diabete or celiac disease .
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Art. -Nr.: HY-L942
1,632 compounds

Unlike highly conserved orthosteric sites, allosteric sites exhibit low conservation, high hydrophobicity, weak polarity, confined geometry, and dynamic cryptic properties. Rather than rigid keyhole-like cavities, they typically appear as flexible grooves, subunit interface clefts, or shallow depressions formed by protein conformational changes.

Based on the dynamic, hydrophobic, and elongated nature of allosteric pockets, MCE has carried out targeted fragment modification and screening under strict physicochemical criteria: MW 120–280 Da, HBD ≤ 2, HBA ≤ 3, PSA 30–80 Ų, rotatable bonds ≤ 2, cLogP 1–3.5. High 3D diversity was further ensured by PMI analysis, yielding fragments with excellent shape complementarity to allosteric pockets.

This library contains 1,800 structurally diverse, drug-like fragments, this library supports allosteric drug development and pocket optimization. It significantly improves screening hit rates and enables efficient, precise early-stage R&D of allosteric drugs.

Art. -Nr.: HY-181739
Target:  

CD1

Forschungsgebiete:  

Cancer

GCB-27a is a CD1d-binding immunostimulant and antitumor agent. GCB-27a binds to CD1d to form a stable complex and presents it to NKT cells, enhancing hydrophobic interactions within the A' pocket of CD1d through branched-chain conformation restriction. GCB-27a induces a Th1-biased immune response, drives IFN?γ production and limits IL-4 levels. GCB-27a is applicable to research related to melanoma lung metastasis .
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Art. -Nr.: HY-L928
7,109 compounds

G protein-coupled receptors (GPCRs) are membrane proteins in humans and one of the most important targets in drug discovery. Approximately 35% of launched drugs are targeted GPCRs, making them a crucial class of targets in drug discovery.

The orthosteric site of a GPCR is its endogenous ligand’s (such as neurotransmitters or hormones) binding site. This site plays a central role in signal transduction. Small molecules binding to this site typically contain a protonatable amino group, enabling the formation of salt bridges or hydrogen bonds with acidic residues in the binding pocket. In contrast, the allosteric site does not directly initiate signaling but modulates the signal intensity of the GPCR by altering or stabilizing the conformation of the orthosteric site. Small molecules binding to the allosteric site often contain multiple aromatic rings to occupy hydrophobic pockets and achieve their functional effects.

MCE has collected over 7,109 reported bioactive molecules targeting GPCRs, covering Class A, B, and C GPCRs. These small molecules were subjected to AI representation to extract 2D and 3D features. Subsequently, we do screening by AI score based on similarity to identify molecules in diversity library highly similar to the reported bioactive molecules in both 2D and 3D, with a threshold greater than 0.7. Further screening based on cLogP was applied to select molecules with good lipophilicity, which facilitates the binding of small molecules to GPCRs. This diversity library can be widely applied to the discovery of compounds targeting GPCR proteins.