79 Results for "

ATP-binding site

" in MedChemExpress (MCE) Product Catalog:
Products (79)

79 Results for "ATP-binding site" in MCE Product Catalog:

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-183627
Target:  

PI5P4K

Research Areas:  

Cancer

066ATZ is a PIP4K2A/2B inhibitor with human PIP4K2A Ki 100 nM and PIP4K2B Ki 800 nM. 066ATZ binds to ATP-binding sites of PIP4K2A and PIP4K2B to block lipid kinase activity. 066ATZ can be used for the research of non-small cell lung cancer .
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Cat. No.: HY-111300
CAS No.: 848952-37-4
Target:  

HSP EGFR

Research Areas:  

Cancer

G3130 is a reversible HSP90 inhibitor with a Kd value of 280 nM for the N-terminal ATP-binding domain of purified human Hsp90α. G3130 binds to the adenine site via a multi-hydrogen bond network . G3130 induces the degradation of Hsp90 client protein Her-2 in breast cancer cells. G3130 activates Hsp70 promoter-driven luciferase expression in 293T cells. G3130 can be used in breast cancer-related research .
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Cat. No.: HY-181478
Target:  

HSP

Research Areas:  

Cancer

Hsp90-IN-45 is a Hsp90 inhibitor. Hsp90-IN-45 competitively binds to the ATP-binding site of purified Hsp90α with a Kd of 70 nM, blocks ATP hydrolysis, and disrupts Hsp90 client signaling. Hsp90-IN-45 inhibits ATPase activity of purified Hsp90α. Hsp90-IN-45 will be radiolabeled with 76/ 77Br for use as a radiotheragnostic agent for PET imaging and Meitner-Auger electron therapy. Hsp90-IN-45 can be used for the research of cancer .
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Cat. No.: HY-182430
CAS No.: 1180158-99-9
Target:  

JAK STAT Apoptosis

Research Areas:  

Cancer

NVP-BVB808 is a selective and ATP-competitive JAK2 inhibitor with an IC50 of 0.35 nM. NVP-BVB808 binds to JAK2’s ATP-binding site, stabilizes JAK2’s active conformation, increases JAK2 activation loop phosphorylation, and blocks downstream kinase function. NVP-BVB808 exhibits antiproliferative and pro-apoptosis effects, suppresses constitutive STAT5a phosphorylation. NVP-BVB808 can be used for the research of cancer, such as leukemia .
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Cat. No.: HY-100848R
CAS No.: 1603845-32-4
Research Areas:  

Cancer

TX1-85-1 (Standard) is the analytical standard of TX1-85-1 (HY-100848). This product is intended for research and analytical applications. TX1-85-1 is an irreversible Her3 (ErbB3) inhibitor with an IC50 of 23 nM. TX1-85-1 is also the first selective Her3 ligand, which forms a covalent bond with Cys721 located in the ATP-binding site of Her3. TX1-85-1 induces partial degradation of Her3 protein and attenuates Her3-dependent signaling .
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Cat. No.: HY-182302
CAS No.: 1695550-43-6
Target:  

Drug Derivative HSP

Research Areas:  

Cancer

SMTIN-P01 is a TRAP1 inhibitor that is selective for cytosolic Hsp90 and accumulates in mitochondria. SMTIN-P01 binds to the ATP-binding site of TRAP1 as an ATP mimic, thereby inhibiting ATPase and foldase activities. SMTIN-P01 induces mitochondrial membrane depolarization and proteolytic degradation in cancer cells. SMTIN-P01 exhibits significant cytotoxicity, but shows extremely low toxicity to primary mouse hepatocytes, and does not interfere with SIRT3-related functions or the levels of cytosolic Hsp90 substrates. SMTIN-P01 has important application value in cancer-related research .
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Cat. No.: HY-15466A
CAS No.: 2242053-82-1
Synonyms: CH5132799 methanesulfonate
Target:  

PI3K Apoptosis mTOR Akt

Research Areas:  

Cancer

Izorlisib (CH5132799) methanesulfonate is an orally active, selective Class I PI3K inhibitor with an IC50 value of 14 nM against PI3Kα. Izorlisib methanesulfonate specifically inhibits Class I PI3K (particularly PI3Kα and its mutants) and blocks the PI3K/Akt/mTOR pathway; this leads to cell cycle arrest at the G1 phase and apoptosis without triggering feedback activation of Akt by competitively binding to the ATP-binding site of PI3K. Izorlisib methanesulfonate can be used in research on cancers harboring PIK3CA mutations or PTEN loss (such as breast, ovarian, prostate, and endometrial cancers) .
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Cat. No.: HY-153761A
CAS No.: 324566-92-9
Research Areas:  

Others

(E/Z)-ASK1-IN-4 is an isomer of ASK1-IN-4 (HY-153761). ASK1-IN-4 is an ASK1 inhibitor (IC50 = 0.2 μM) that interacts with the ATP binding site of ASK1 .
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Cat. No.: HY-182037
Research Areas:  

Cancer

Multi-target kinase-IN-9 is a multi-target enzyme inhibitor with antiproliferative and antiangiogenic activities, and exhibits remarkable selectivity against hepatocellular carcinoma cells. By broadly binding to the active sites or ATP-binding regions of multiple key enzymes including DNA polymerase β, Pyruvate Kinase M2 (PKM2), Multi-target kinase-IN-9 comprehensively disrupts DNA repair and replication, glycolysis, chromatin dynamics and transcriptional programs, and blocks the self-renewal of cancer stem cells. Multi-target kinase-IN-9 induces genomic instability, lysosomal dysfunction and autophagic flux impairment, thereby triggering tumor cell death, effectively inhibiting tumor proliferation, invasion, metastasis and angiogenesis, and significantly reducing tumor volume in xenograft models. Multi-target kinase-IN-9 is applicable to hepatocellular carcinoma-related research .
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Cat. No.: HY-N14094
CAS No.: 2632-29-3
Tubulosine is an alkaloid. Tubulosine can be isolated from Pogonopus tubulosus (DC.) Schumann. Tubulosine is an ATP-competitive, selective JAK3 inhibitor with an IC50 value of 9.9 nM. Tubulosine also inhibits the kinase activities of other JAK family members, the extent of inhibition is less than that of JAK3, with IC50 values of 69.5, 84.9 and 76.3 nM for JAK1, JAK2 and TYK2, respectively. Tubulosine selectively inhibits JAK3 signalling by binding to the ATP-binding site of the kinase of JAK3. Tubulosine induces apoptotic and necrotic/autophagic cell death. Tubulosine inhibits the process of peptide chain elongation by eukaryotic polysomes by, specifically preventing the elongation-factor-2-dependent step of translocation. Tubulosine exhibits anticancer activity in breast cancer cells .
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Cat. No.: HY-N17788
CAS No.: 79755-43-4
Target:  

Tie

6-Hydroxy-2,2′,4,4′-tetrabromodiphenyl ether is a selective inhibitor of Tie2 kinase, with an IC50 value of 2.1 μM. 6-Hydroxy-2,2′,4,4′-tetrabromodiphenyl ether interacts with the ATP binding site of Tie2 kinase, inhibiting kinase activity and subsequently blocking tumor angiogenesis. 6-Hydroxy-2,2′,4,4′-tetrabromodiphenyl ether can be isolated from sponges of the genus Dysidea .
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Cat. No.: HY-101562R
CAS No.: 2060571-02-8
Synonyms: GDC-0077 (Standard); RG6114 (Standard)
Research Areas:  

Cancer

Inavolisib (Standard) is the analytical standard of Inavolisib (HY-101562). This product is intended for research and analytical applications. Inavolisib (GDC-0077) is a potent, orally active, and selective PI3Kα inhibitor (IC50=0.038 nM). Inavolisib exerts its activity by binding to the ATP binding site of PI3K, thereby inhibiting the phosphorylation of PIP2 to PIP3. Inavolisib is more selective for mutant versus wild-type PI3Kα. Inavolisib can be used for the study of breast cancer .
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Cat. No.: HY-106005R
CAS No.: 1314883-11-8
Research Areas:  

Infection

MMV390048 (Standard) is the analytical standard of MMV390048 (HY-106005). This product is intended for research and analytical applications. MMV390048 is a representative of a new chemical class of Plasmodium PI4K inhibitor (Kdapp=0.3 μM). MMV390048 binds to the ATP binding site of Plasmodium PI4K and does not bind to other P. falciparum and human kinases apart from human PIP4K2C, thus alleviating potential kinase-mediated safety concerns. MMV390048 is an antimalarial agent .
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Cat. No.: HY-107779R
CAS No.: 1392429-79-6
Target:  

Reference Standards Raf

Research Areas:  

Cancer

BI-882370 (Standard) is the analytical standard of BI-882370 (HY-107779). This product is intended for research and analytical applications. BI-882370 is a potent and selective RAF Kinase inhibitor that binds to the ATP binding site of the Kinase positioned in the DFG-out (inactive) conformation of the BRAF Kinase. BI-882370 (BI 882370) inhibits the oncogenic BRAFV600E-mutant, the WT BRAF and CRAF Kinases with IC50s of 0.4, 0.8, and 0.6 nM, respectively. BI-882370 also inhibits SRC family Kinases .
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Cat. No.: HY-185227
CAS No.: 1394837-94-5
Research Areas:  

Cancer

EphB4-IN-1 is a selective EphB4 tyrosine kinase inhibitor with IC50 values of 0.16-0.30 μM. EphB4-IN-1 binds to the ATP binding site of EphB4 in a DFG-in conformation, forming four stable intermolecular hydrogen bonds. EphB4-IN-1 also inhibits Src, Abl1, Lck, and EGFR kinases. EphB4-IN-1 inhibits EphB4 autophosphorylation. EphB4-IN-1 can be used for the research of cancer, such as non small cell lung cancer .
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Cat. No.: HY-101513R
CAS No.: 2095486-67-0
eIF4A3-IN-1 (Standard) is the analytical standard of eIF4A3-IN-1 (HY-101513). This product is intended for research and analytical applications. eIF4A3-IN-1 is a selective eIF4A3 inhibitor (IC50: 0.26 μM; Kd: 0.043 μM) with cellular nonsense-mediated RNA decay (NMD) inhibitory activity. eIF4A3-IN-1 can specifically bind to the non-ATP binding site of eIF4A3. eIF4A3-IN-1 has anti-tumor and analgesic activities .
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Cat. No.: HY-110079R
CAS No.: 519178-28-0
Research Areas:  

Cancer

TNP (Standard) is the analytical standard of TNP (HY-110079). This product is intended for research and analytical applications. TNP is a competitive, reversible inhibitor of IP6K1 and IP3K, with IC50s of 0.55 μM and 10.2 μM for IP6K1 and IP3K, respectively. TNP competitively binds to the ATP binding site of IP6K, inhibits the generation of 5-IP7, and thus relieves the inhibition of 5-IP7 on the AKT signaling pathway. TNP can enhance insulin sensitivity and promote thermogenesis in adipose tissue. TNP cannot effectively pass through the blood-brain barrier and is mainly used in the study of obesity, type 2 diabetes, and metabolic syndrome. However, TNP also inhibits CYP3A4 and may need further optimization .
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