24 Results for "

GPCR kinase

" in MedChemExpress (MCE) Product Catalog:
Products (24)

24 Results for "GPCR kinase" in MCE Product Catalog:

9
9 Cited Publications
Cat. No.: HY-15589
CAS No.: 885101-89-3
Purity:  99.23%
GW9508 is a potent and selective G protein-coupled receptors FFA1 (GPR40) and GPR120 agonist with pEC50s of 7.32 and 5.46, respectively. GW9508 shows ~100-fold selectivity for GPR40 over GPR120. GW9508 is inactive against other GPCRs, kinases, proteases, integrins and PPARs. GW9508 is a glucose-sensitive insulin secretagogue and an ATP-sensitive potassium (KATP) channels opener. Anti-inflammatory and anti-atherosclerotic activities .
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3
3 Cited Publications
Cat. No.: HY-47573
CAS No.: 2750414-35-6
CCG273441 is a covalent inhibitor of G protein-coupled receptor (GPCR) kinase 5 (GRK5) with an IC50 value of 3.8 nM. CCG273441 is highly selective to GRK5 over GRK2 (IC50=4.8 μM) by binding Cys474, a GRK5 subfamily-specific residue, as a covalent handle .
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Cat. No.: HY-141796
CAS No.: 2407452-77-9
Purity:  98.64%
Target:  

PROTACs WDR5

Research Areas:  

Cancer

MS67 is a potent and selective WD40 repeat domain protein 5 (WDR5) degrader with a Kd of 63 nM. MS67 is inactive against other protein methyltransferases, kinases, GPCRs, ion channels, and transporters. MS67 shows potent acticancer effects .
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Cat. No.: HY-153830
CAS No.: 4201-62-1
Synonyms: C16 Lactosylceramide (d18:1/16:0)
LacCer (d18:1/16:0) (C16 Lactosylceramide (d18:1/16:0)) is an endogenous bioactive sphingolipid that can form membrane microdomains with Lyn kinase and the αi subunits of inhibitory G protein-coupled receptors (GPCRs). The levels of LacCer (d18:1/16:0) are elevated in the plasma of insulin-resistant cattle. In a mouse model of Niemann-Pick type C1 disease (a neurodegenerative cholesterol-sphingolipid lysosomal storage disorder), the expression of LacCer (d18:1/16:0) is also upregulated. LacCer (d18:1/16:0) can be used in research on metabolic diseases and neurodegenerative diseases .
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Cat. No.: HY-161169A
CAS No.: 2865106-78-9
Target:  

MMP

Research Areas:  

Cancer

TP0628103 TFA is a potent and highly selective MMP-7 inhibitor with an IC50 of 0.17 nM. TP0628103 TFA undergoes structural optimization via molecular isoelectric point shifting, which reduces organic anion transporter (OAT)-mediated clearance, while maintaining potent MMP-7 inhibitory activity and enhancing MMP subtype selectivity. TP0628103 TFA is applicable for research on the regulatory mechanisms of MMP-7-related matrix metalloproteinases .
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Cat. No.: HY-15589R
CAS No.: 885101-89-3
GW9508 (Standard) is the analytical standard of GW9508. This product is intended for research and analytical applications. GW9508 is a potent and selective G protein-coupled receptors FFA1 (GPR40) and GPR120 agonist with pEC50s of 7.32 and 5.46, respectively. GW9508 shows ~100-fold selectivity for GPR40 over GPR120. GW9508 is inactive against other GPCRs, kinases, proteases, integrins and PPARs. GW9508 is a glucose-sensitive insulin secretagogue and an ATP-sensitive potassium (KATP) channels opener. Anti-inflammatory and anti-atherosclerotic activities .
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Cat. No.: HY-161169
CAS No.: 2865102-08-3
Target:  

MMP

Research Areas:  

Cancer

TP0628103 is a potent and highly selective MMP-7 inhibitor with an IC50 of 0.17 nM. TP0628103 undergoes structural optimization via molecular isoelectric point shifting, which reduces organic anion transporter (OAT)-mediated clearance, while maintaining potent MMP-7 inhibitory activity and enhancing MMP subtype selectivity. TP0628103 is applicable for research on the regulatory mechanisms of MMP-7-related matrix metalloproteinases .
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Cat. No.: HY-153830S
CAS No.: 2097249-92-6
Synonyms: C16 Lactosylceramide (d18:1/16:0)-d3
LacCer (d18:1/16:0) (C16 Lactosylceramide (d18:1/16:0))-d3 is the deuterium labeled LacCer (d18:1/16:0) (HY-153830). LacCer (d18:1/16:0) is an endogenous bioactive sphingolipid that can form membrane microdomains with Lyn kinase and the αi subunits of inhibitory G protein-coupled receptors (GPCRs). LacCer (d18:1/16:0) are elevated in the plasma of insulin-resistant cattle. LacCer (d18:1/16:0) is also upregulated in a mouse model of Niemann-Pick type C1 disease (a neurodegenerative cholesterol-sphingolipid lysosomal storage disorder). LacCer (d18:1/16:0) can be used in research on metabolic diseases and neurodegenerative diseases .
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Cat. No.: HY-W087019
CAS No.: 23680-84-4
Synonyms: 4-Amino-2-chloro-6,7-dimethoxyquinazoline
Target:  

Drug Intermediate

Research Areas:  

Neurological Disease

ACDQ (4-Amino-2-chloro-6,7-dimethoxyquinazoline) is a pharmaceutical intermediate that can be used for the synthesis of quinazoline-based antibacterial agents. Molecular docking results of ACDQ indicate that it possesses potential acetylcholinesterase inhibitory activity, and it can be applied to Alzheimer's disease-related research .
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Cat. No.: HY-123862
CAS No.: 1605328-04-8
LAS195319 is an orally active and potent inhibitor against PI3Kδ with an IC50 value of 0.5 nM. LAS195319 is also a highly selective inhibitor against an extensive panel of proteins, lipid kinases and GPCRs. LAS195319 causes an inhibition of neutrophil and eosinophil infiltration. LAS195319 is promising for research of respiratory diseases such as asthma and chronic obstructive pulmonary disease (COPD) .
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Cat. No.: HY-150022
CAS No.: 2410794-89-5
Synonyms: CCG-265328
GRK5-IN-4 (Compound 16d, CCG-265328) is a potent and and selective covalent GRK5 (G protein-coupled receptor kinase 5) inhibitor, with an IC50 of 1.1 μM. GRK5-IN-4 shows 90-fold selectivity over GRK2. GRK5-IN-4 can be used for heart failure research . GRK5-IN-4 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
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Cat. No.: HY-E70609
Target:  

PI3K

Research Areas:  

Inflammation/Immunology Cancer

PIK3CG Recombinant Human Active Lipid Kinase belongs to PI3K enzyme family that is directly regulated by Gβγ and Ras in the G protein coupled receptor (GPCR) pathway. PIK3CG has the function of regulating cellular inflammation and immunity. PIK3CG is also a potential target for the treatment of a few malignant tumors such as acute lymphoblastic leukemia, medulloblastoma, claudin-low breast cancer (CLBC) and Kaposi sarcoma .
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Cat. No.: HY-178978
CAS No.: 3051899-13-6
Research Areas:  

Inflammation/Immunology

α,δ-NAG is an orally active glutaminase-resistant less-hydrolyzable L-Glutamine derivative. α,δ-NAG is a G protein-coupled receptor (GPCR) allosteric modulator. α,δ-NAG suppresses neutrophilic airway inflammation by activating the GPCR/ERK/MKP-1 pathway. α,δ-NAG can be used for the researches of inflammation and immunology, such as asthma .
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Cat. No.: HY-L158
6,295 compounds

According to reports, most known kinase inhibitors exert their effects through competitive binding in highly conserved ATP pockets. Although genetic techniques such as RNA interference can inactivate specific genes, most kinases are multi domain proteins, each of which has an independent function. Highly selective inhibitors have higher efficiency than non-selective inhibitors, and the selectivity to the target is at least 100 times higher. Therefore, ensuring the validation of targets with the most selective inhibitors is crucial for a more thorough understanding of the pharmacology of the kinase field. The Highly Selective Inhibitors Library contains 6,295 compounds, covering multiple targets and subtypes, such as GPCR protein family, Ion channel, multiple kinases, etc. The Highly Selective Inhibitors Library is an effective tool for screening different phenotypes

Cat. No.: HY-L099
2,296 compounds

MCE Targeted Diversity Library contains 2,296 compounds, covering more than 1000 targets and isoforms, such as GPCRs, Ion channel, variety of kinases, etc. 1-3 compounds with high potency and selectivity were carefully selected for each target and isoform. The bioactivity information of each compound has been clearly reported in the literatures. This library is a concise collection of small molecule compounds with comprehensive target coverage, which can be used for phenotypic screening at low cost.

Cat. No.: HY-L159
2,164 compounds

Agonistic drugs activate or stimulate their receptors, triggering responses that increase or decrease cell activity. The highly selective activators can act on specific biological or molecular targets, while non-selective activators may interfere with multiple targets or targets simultaneously. The highly selective activators reduce the likelihood of these non-specific effects by targeting specific targets, making research more precise and reliable. The Highly Selective Activators Library contains 2,164 compounds, covering multiple targets and subtypes, such as GPCR protein family, Ion channel, multiple kinases, etc. The Highly Selective Activators Library is an effective tool for screening different phenotypes.

Cat. No.: 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.

Cat. No.: HY-180583
CAS No.: 3061801-11-1
GRK5-IN-5 (Compound 4a) is a selective G protein-coupled receptor (GPCR) kinase 5 (GRK5) inhibitor with an IC50 of 0.03 μM. GRK5-IN-5 shows IC50 values of 2.2 and 0.036 μM for GRK2 and GRK6. GRK5-IN-5 has potent anti-myocardial hypertrophy activity and also inhibits the proliferation of non-myocardial cells. GRK5-IN-5 can inhibit the abnormal upregulation of hypertrophy marker genes Nppa and Nppb, thus blocking pathological myocardial remodeling. GRK5-IN-5 can be used for the research of cardiac hypertrophy .
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Cat. No.: HY-L028
1,148 compounds

The blood-brain barrier (BBB) is the complex network of brain microvessels. It protects the brain from the external bloodstream environment and supplies the brain with the required nutrients for normal function. However, blood-brain barrier is also the obstacle to deliver beneficial drugs to treat CNS (central nervous system) diseases or brain tumors, as it has the least permeable capillaries in the entire body due to physical barriers (tight junctions). Therefore, it is crucial to discover drugs which can cross this barrier for the treatment of brain-based diseases, such as Alzheimer’s disease (AD), Parkinson’s disease (PD) and epilepsy.

MCE offers a unique collection of 1,148 compounds with confirmed CNS-Penetrant property. It’s a useful tool for the discovery of drugs used for brain diseases, such as brain tumors, mental disorders, and neurodegenerative diseases.

Cat. No.: HY-L941
4,218 compounds

Orthosteric sites are highly conserved, leading to poor subtype selectivity, off-target toxicity and drug resistance in traditional drugs. By contrast, allosteric sites show low conservation, high hydrophobicity, weak polarity, confined geometry and dynamic cryptic properties, granting modulators high selectivity, functional tunability and safety. Thus, allosteric therapy has become a major focus in drug discovery.

MCE curated nearly 1,000 clinical-stage allosteric modulators, analyzed PDB complex structures to identify key pharmacophores and privileged scaffolds, then designed and filtered compounds using rational “scaffold derivation + physicochemical screening” with strict property criteria. The resulting compounds show high rigidity and shape complementarity to shallow, dynamic, hydrophobic allosteric pockets.

This library comprises 4,315 diverse, lead-like compounds ideal for allosteric drug discovery and target screening, covering kinases, GPCRs and more. All are analogs of clinical-stage molecules with similarity > 0.6, combining high druggability and allosteric binding potential to support efficient early-stage R&D.