16 Results for "

kinase domain mutations

" in MedChemExpress (MCE) Product Catalog:
Products (16)

16 Results for "kinase domain mutations" in MCE Product Catalog:

3
3 Cited Publications
Cat. No.: HY-153268
CAS No.: 2607829-38-7
Purity:  99.03%
Synonyms: BDTX-1535; EGFR-IN-76
Target:  

EGFR

Silevertinib (BDTX-1535) is an irreversible, brain-penetrant, selective and orally active EGFR inhibitor with wild-type EGFR-sparing. Silevertinib targets key EGFR resistance mutations, including the kinase domain (C797S, L718Q, G724S, S768I), extracellular domain (EGFRvIII, A289X), and EGFR amplification. Silevertinib exerts anti-tumor activity with well tolerated in vivo. Silevertinib can be used for non-small cell lung cancer (NSCLC) and glioblastoma (GBM) research .
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Cat. No.: HY-E70634
Target:  

Bcr-Abl

Research Areas:  

Cancer

The emergence of mutations in the BCR::ABL1 kinase domain (KD) impairs Imatinib Mesylate (HY-50946) binding capacity, thus contributing to Imatinib Mesylate resistance. Identification of these mutations is important for treatment decisions and precision medicine in chronic myeloid leukaemia (CML). ABL1 E255K Recombinant Human Active Protein Kinase is a recombinant ABL1 E255K protein that can be used to study ABL1 E255K-related functions .
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Cat. No.: HY-E70635
Target:  

Bcr-Abl

Research Areas:  

Cancer

The emergence of mutations in the BCR::ABL1 kinase domain (KD) impairs Imatinib Mesylate (HY-50946) binding capacity, thus contributing to Imatinib Mesylate resistance. Identification of these mutations is important for treatment decisions and precision medicine in chronic myeloid leukaemia (CML). ABL1 F317I Recombinant Human Active Protein Kinase is a recombinant ABL1 F317I protein that can be used to study ABL1 F317I-related functions .
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Cat. No.: HY-E70636
Target:  

Bcr-Abl

Research Areas:  

Cancer

The emergence of mutations in the BCR::ABL1 kinase domain (KD) impairs Imatinib Mesylate (HY-50946) binding capacity, thus contributing to Imatinib Mesylate resistance. Identification of these mutations is important for treatment decisions and precision medicine in chronic myeloid leukaemia (CML). ABL1 G250E Recombinant Human Active Protein Kinase is a recombinant ABL1 G250E protein that can be used to study ABL1 G250E-related functions .
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Cat. No.: HY-E70637
Target:  

Bcr-Abl

Research Areas:  

Cancer

The emergence of mutations in the BCR::ABL1 kinase domain (KD) impairs Imatinib Mesylate (HY-50946) binding capacity, thus contributing to Imatinib Mesylate resistance. Identification of these mutations is important for treatment decisions and precision medicine in chronic myeloid leukaemia (CML). ABL1 H396P Recombinant Human Active Protein Kinase is a recombinant ABL1 H396P protein that can be used to study ABL1 H396P-related functions .
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Cat. No.: HY-E70638
Target:  

Bcr-Abl

Research Areas:  

Cancer

The emergence of mutations in the BCR::ABL1 kinase domain (KD) impairs Imatinib Mesylate (HY-50946) binding capacity, thus contributing to Imatinib Mesylate resistance. Identification of these mutations is important for treatment decisions and precision medicine in chronic myeloid leukaemia (CML). ABL1 M351T Recombinant Human Active Protein Kinase is a recombinant ABL1 M351T protein that can be used to study ABL1 M351T-related functions .
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Cat. No.: HY-E70639
Target:  

Bcr-Abl

Research Areas:  

Cancer

The emergence of mutations in the BCR::ABL1 kinase domain (KD) impairs Imatinib Mesylate (HY-50946) binding capacity, thus contributing to Imatinib Mesylate resistance. Identification of these mutations is important for treatment decisions and precision medicine in chronic myeloid leukaemia (CML). ABL1 Q252H Recombinant Human Active Protein Kinase is a recombinant ABL1 Q252H protein that can be used to study ABL1 Q252H-related functions .
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Cat. No.: HY-E70640
Target:  

Bcr-Abl

Research Areas:  

Cancer

The emergence of mutations in the BCR::ABL1 kinase domain (KD) impairs Imatinib Mesylate (HY-50946) binding capacity, thus contributing to Imatinib Mesylate resistance. Identification of these mutations is important for treatment decisions and precision medicine in chronic myeloid leukaemia (CML). ABL1 T315I Recombinant Human Active Protein Kinase is a recombinant ABL1 T315I protein that can be used to study ABL1 T315I-related functions .
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Cat. No.: HY-E70641
Target:  

Bcr-Abl

Research Areas:  

Cancer

The emergence of mutations in the BCR::ABL1 kinase domain (KD) impairs Imatinib Mesylate (HY-50946) binding capacity, thus contributing to Imatinib Mesylate resistance. Identification of these mutations is important for treatment decisions and precision medicine in chronic myeloid leukaemia (CML). ABL1 Y253F Recombinant Human Active Protein Kinase is a recombinant ABL1 Y253F protein that can be used to study ABL1 Y253F-related functions .
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Cat. No.: HY-E70717
Target:  

FGFR

Research Areas:  

Cancer

FGFR1 has been implicated in numerous cancer types including non-small cell lung cancer (NSCLC). FGFR1 is activated upon FGF binding to its extracellular domain, resulting in protein dimerization and transautophosphorylation of the intracellular tyrosine kinase domains. FGFR1 V561M gatekeeper mutation drives Fexagratinib (AZD4547) (HY-13330) resistance through STAT3 Activation and EMT. FGFR1 V561M Recombinant Human Active Protein Kinase is a recombinant FGFR1 V561M protein that can be used to study FGFR1 V561M-related functions .
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Cat. No.: HY-E70723
Target:  

FLT3

Research Areas:  

Cancer

FLT3 (FMS-like tyrosine kinase 3, CD135) is a type 3 receptor tyrosine kinase that plays important roles in cell survival, proliferation, and differentiation during normal hematopoiesis. FLT3 is one of the most frequently mutated genes in acute myeloid leukemia (AML). FLT3 D835Y is the most frequent kinase domain mutation, converting aspartic acid to tyrosine. FLT3 D835Y Recombinant Human Active Protein Kinase is a recombinant FLT3 D835Y protein that can be used to study FLT3 D835Y-related functions .
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Cat. No.: HY-E70694
Research Areas:  

Cancer

Discoidin domain receptor 2 (DDR2) is a sensor for collagen and by participating in migration, proliferation, and extracellular matrix remodeling. DDR2 T654M is a DDR2 mutation. DDR2 T654M Recombinant Human Active Protein Kinase is a recombinant DDR2 T654M protein that can be used to study DDR2 T654M-related functions .
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Cat. No.: HY-158178
CAS No.: 3032760-90-7
Target:  

EGFR

Research Areas:  

Cancer

EGFR T790M/L858R-IN-7 (Compound 72) is a novel pyrimidine compound that inhibits the EGFR T790M and L858R mutation with a high efficacy (93% inhibition rate at 0.05 μM). EGFR T790M/L858R-IN-7 functions by specifically binding to the kinase domain of EGFR, thereby inhibiting its phosphorylation activity .
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Cat. No.: HY-E70693
Research Areas:  

Cancer

Discoidin domain receptor 2 (DDR2) is a sensor for collagen and by participating in migration, proliferation, and extracellular matrix remodeling. DDR2 N456S is a DDR2 mutation that may be present in non-small cell lung cancer. DDR2 N456S Recombinant Human Active Protein Kinase is a recombinant DDR2 N456S protein that can be used to study DDR2 N456S-related functions .
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Cat. No.: HY-158265
Target:  

FLT3

Research Areas:  

Cancer

FLT3D835Y/F691L-IN-1 (compd 8v) is an orally active inhibitor of FLT3 3-tyrosine kinase domain D835Y/F691L secondary mutations with IC50s of 1.5 and 9.7 nM. FLT3D835Y/F691L-IN-1 can be used for acute myeloid leukemia research .
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Cat. No.: HY-P992396

Target:  

c-Met/HGFR

Research Areas:  

Cancer

KTN0073 is a high-affinity MET receptor tyrosine kinase inhibitor. KTN0073 can be used in studies related to non-small cell lung cancer and human cancers driven by HGF, MET amplification, or exon 14 mutation. KTN0073 binds to the Sema/PSI domain to block the HGF-MET interaction, and induces ubiquitination and degradation of oncogenic MET receptors via an HGF-independent pathway, thereby inhibiting MET-dependent signal transduction. KTN0073 exhibits significant antitumor activity in vivo, and its tumor suppressive activity is superior to that of the IgG1 subtype when grafted to the IgG2 constant region .
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