76 Results for "

ATP-binding pocket

" in MedChemExpress (MCE) Product Catalog:
Products (76)

76 Results for "ATP-binding pocket" in MCE Product Catalog:

Cat. No.: HY-161395
Target:  

Bacterial

Research Areas:  

Infection

IDD-8E is an effective anti-pseudomonal agent (MIC =4.4 µM ) with no cytotoxicity. IDD-8E shows significant pseudomonal killing and disruption of pseudomonal biofilm. IDD-8E binds to the ATP-binding pocket of WaaP and also inhibits other ESKAPE pathogens.
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Cat. No.: 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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Cat. No.: HY-75368
CAS No.: 905580-86-1
Target:  

LRRK2

Research Areas:  

Neurological Disease

SRI-31255 is an orally active LRRK2 inhibitor with IC50 values of 520 and 427 nM for human wild-type (WT) and mutant G2019S, respectively. SRI-31255 exerts neuroprotective effects by binding to the ATP-binding pocket of LRRK2, inhibiting kinase activity. SRI-31255 can be used as a lead compound for the development of LRRK2-targeted drugs for the treatment of Parkinson's disease .
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Cat. No.: HY-143261
Target:  

GSK-3

GSK-3β inhibitor 7 is a GSK-3β inhibitor with an IC50 value of 5.25 μM. GSK-3β inhibitor 7 is inserted into the ATP-binding binding pocket of GSK-3β and forms hydrogen-bond. GSK-3β inhibitor 7 shows high hepatocyte glucose uptake (83.5%), and can be used in the research of numerous diseases like diabetes, inflammation, cancer, Alzheimer's disease, and bipolar disorder .
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Cat. No.: HY-N0656AR
CAS No.: 7562-61-0
(+)-Usnic acid (Standard) is the analytical standard of (+)-Usnic acid. This product is intended for research and analytical applications. (+)-Usnic acid is isolated from isolated from lichens, binds at the ATP-binding pocket of mTOR, and inhibits mTORC1/2 activity. (+)-Usnic acid inhibits the phosphorylation of mTOR downstream effectors: Akt (Ser473), 4EBP1, S6K, induces autophay, with anti-cancer activity . (+)-Usnic acid possesses antimicrobial activity against a number of planktonic gram-positive bacteria, including Staphylococcus aureus, Enterococcus faecalis, and Enterococcus faecium .
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Cat. No.: HY-164474
Target:  

MEK

Research Areas:  

Cancer

DS03090629 is an orally active, ATP-competitive MEK1/2 inhibitor. DS03090629 binds to the ATP-binding pocket of MEK, and this binding is unaffected by phosphorylation status. DS03090629 exhibits high affinity for both MEK and phosphorylated MEK, with Kd values of 0.11 nM and 0.15 nM, respectively. DS03090629 inhibits the MEK1F53L mutant while retaining activity relative to wild-type MEK1. DS03090629 suppresses the MAPK pathway, cell proliferation, and BRAF overexpression-mediated drug resistance in melanoma cells. DS03090629 can be used for research related to melanoma .
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Cat. No.: HY-12491
CAS No.: 691388-62-2
Target:  

PI3K Apoptosis

Research Areas:  

Cancer

PIK-C98 is a potent and selective PI3K inhibitor, with IC50s of 0.59, 1.64, 3.65, and 0.74 μM for α, β, δ, and γ isoforms, respectively. PIK-C98 inhibits all class I PI3Ks but has no effects on AKT or mTOR activity. PIK-C98 interferes with the ATP-binding pockets of PI3Ks by forming H-bonds and arene-H interactions with specific amino acid residues. PIK-C98 induces apoptosis by inhibiting PI3K. PIK-C98 can be used for the research of multiple myeloma .
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Cat. No.: HY-156026
Target:  

FAK

Research Areas:  

Cancer

FAK-IN-11 (Compound 4l) is a FAK inhibitor. FAK-IN-11 binds to the ATP binding pocket of FAK, and inhibits phosphorylation of FAK protein. FAK-IN-11 shows cytotoxic activity against the MDA-MB-231 cells with an IC50 of 13.73? μM. FAK-IN-11 induces non-apoptotic cell death in MDA-MB-231 cells .
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Cat. No.: HY-103490R
CAS No.: 1111556-37-6
Synonyms: EDHS-206 (Standard)
Takinib (Standard) is the analytical standard of Takinib. This product is intended for research and analytical applications. Takinib (EDHS-206) is an orally active and selective TAK1 inhibitor (IC50=9.5 nM), more than 1.5 log more potent than the second and third ranked targets, IRAK4 (120 nM) and IRAK1 (390 nM), respectively. Takinib is an inhibitor of autophosphorylated TAK1 that non-competitively binds within the ATP binding pocket. Takinib induces apoptosis following TNFα stimulation in cell models of rheumatoid arthritis and metastatic breast cancer. Takinib is also a P. falciparum protein kinase 9 (PfPK9) inhibitor (KD(app) of 0.46 μM) .
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Cat. No.: HY-164399A
CAS No.: 1202920-93-1
Target:  

HSP ERK CDK Akt

Research Areas:  

Cancer

SST0116CL1 free base is a HSP90 inhibitor (IC50: 0.21 μM). SST0116CL1 free base binds to the ATP binding pocket of Hsp90, and interferes with Hsp90 chaperone function thus resulting in client protein (EGFR, CDK4 and AKT) degradation. SST0116CL1 free base induces degradation of Her2 in BT-474 cell (IC50: 0.2 μM). SST0116CL1 free base has antiproliferative activity and inhibits tumor growth. SST0116CL1 free base has antiproliferative activity and inhibits tumor growth. SST0116CL1 free base can be used for the study of leukemia, gastric and ovarian carcinoma .
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Cat. No.: HY-P11825
Target:  

Bacterial

Research Areas:  

Infection

APH-IN-1 is an Aminoglycoside phosphotransferase (APH) inhibitor with a Kd values of 63 nM against Escherichia coli APH(3′)-Ia. APH-IN-1 binds primarily to the ATP-binding pocket of APH in an ATP-competitive manner, with binding affinity enhanced by divalent metal ions (Mg 2+ and Ca 2+). APH-IN-1 can be used for the research of aminoglycoside-resistant bacterial infections .
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Cat. No.: HY-189124
Target:  

Bacterial Topoisomerase

Research Areas:  

Infection

Antibacterial agent 372 is a potent antibacterial agent. Antibacterial agent 372 is a DNA gyrase inhibitor that binds to the ATP-binding pocket of the GyrB subunit, downregulates gyrB gene expression, and impedes DNA replication and supercoiling. Antibacterial agent 372 exhibits broad-spectrum antibacterial activity against Gram-positive and Gram-negative bacteria. Antibacterial agent 372 can be used for research on microbial infections .
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Cat. No.: HY-P12278
Target:  

EGFR

Research Areas:  

Cancer

NP1 peptide is a cyclic peptide (CHSHGTRAC) and TK-EGFR inhibitor (IC50 = 0.58 nM, Kd = 18.40 μM). NP1 peptide blocks kinase activity by binding to the ATP-binding pocket of TK-EGFR and inhibits autophosphorylation at the EGFR Y1173 site, and it also serves as a pH-responsive nanocarrier for siRNA delivery. NP1 peptide is used in cancer research .
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Cat. No.: HY-182306
Target:  

VEGFR

Research Areas:  

Cardiovascular Disease

VEGFR-2 ligand-1, Sorafenib (HY-10201) derivative, is a vascular endothelial growth factor receptor 2 (VEGFR2) ligand. VEGFR-2 ligand-1 binds to the ATP-binding pocket of VEGFR2, forms hydrophobic contacts and hydrogen bonds with key binding-site residues. VEGFR-2 ligand-1 can be used for the research angiogenesis-related pathologies .
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Cat. No.: HY-187340
Target:  

c-Kit c-Fms

CSF1R/c-Kit-IN-1 is a CSF-1R and c-Kit inhibitor, with an IC50 of 5.88 nM against human CSF-1R and an IC50 of 1.47 nM against human c-Kit. CSF1R/c-Kit-IN-1 binds to the ATP-binding pocket of CSF-1R, forming a hinge interaction with Cys666 via the oxazole nitrogen atom and adjacent amino group, and binds to residues in the hydrophobic binding pocket. CSF1R/c-Kit-IN-1 binds to the ATP-binding pocket of c-Kit, maintains a hinge interaction through its 2-amino-oxazole core, and binds to a broader hydrophobic surface near the solvent-exposed region via its morpholine substituent. CSF1R/c-Kit-IN-1 inhibits CSF-1-induced phosphorylation of ERK, which is a downstream readout of the CSF-1R signaling pathway. CSF1R/c-Kit-IN-1 can be used in the research of neuroinflammation-related neurodegenerative diseases .
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Cat. No.: HY-183785
CAS No.: 3125240-35-6
PROTAC ALK5 Degrader-1 is a selective ALK5 PROTAC degrader. PROTAC ALK5 Degrader-1 induces ALK5 degradation via ALK5 ATP-binding pocket engagement, CRBN recruitment, and the ubiquitin-proteasome system.PROTAC ALK5 Degrader-1 inhibits ALK5 downstream signaling. PROTAC ALK5 Degrader-1 can be used for the research of pulmonary fibrosis .
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Cat. No.: HY-17600A
CAS No.: 2242394-65-4
Synonyms: Calquence maleate; ACP-196 maleate
Target:  

Btk

Research Areas:  

Cancer

Acalabrutinib (Calquence) maleate is an orally active, irreversible, and highly selective second-generation BTK inhibitor. Acalabrutinib binds covalently to Cys481 in the ATP-binding pocket of BTK. Acalabrutinib maleate demonstrates potent on-target effects and efficacy in mouse models of chronic lymphocytic leukemia (CLL). Acalabrutinib maleate can be used for CLL research . Acalabrutinib maleate is a click chemistry reagent, which 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-122859
CAS No.: 2252153-94-7
Target:  

TOPK ERK p38 MAPK JNK AP-1

Research Areas:  

Inflammation/Immunology

ADA-07 is a TOPK inhibitor with activity at the ATP-binding pocket that does not inhibit MEK1 activity. ADA-07 suppresses solar ultraviolet (SUV)-induced phosphorylation of ERK1/2, p38, and JNKs, and inhibits AP-1 activity. ADA-07 attenuates tumor incidence, multiplicity, and volume in SUV-exposed SKH-1 hairless mice. ADA-07 can be used for the research of solar ultraviolet-induced skin carcinogenesis .
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Cat. No.: HY-180355
CAS No.: 2365230-48-2
Target:  

CDK Ser/Thr Kinase c-Myc

Research Areas:  

Cancer

SY-5102 is a potent, selective, and orally active cyclin-dependent kinase (CDK7) inhibitor with a Kd value of 0.03 nM. SY-5102 occupies the ATP-binding pocket of CDK7 via non-covalent binding to inhibit CDK7 activity, and downregulates its phosphorylation of cyclin CDK and RNA polymerase II. SY-5102 inhibits cancer cell proliferation, and induces tumor growth inhibition and regression. SY-5102 can be used in research related to triple-negative breast cancer .
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Cat. No.: HY-184167
Research Areas:  

Cancer

COH-19 is a potent mTOR inhibitor. COH-19 binds to the ATP-binding pocket of mTOR, reduces mTOR protein levels, and suppresses the PI3K/Akt/mTOR signaling pathway. COH-19 induces apoptosis via the mitochondrial pathway. COH-19 causes G0/G1 phase cell cycle arrest and suppresses cancer cell proliferation. COH-19 can be used for the research of breast cancer .
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