362 Results for "

function-1

" in MedChemExpress (MCE) Product Catalog:
Products (362)

362 Results for "function-1" in MCE Product Catalog:

Cat. No.: HY-E70759
Target:  

p38 MAPK

Research Areas:  

Cancer

The mitogen-activated protein kinase kinase 6 (MKK6) is one of the upstream activators of p38 MAPK. MKK6 activates myocardial cell NF-κB and inhibits apoptosis in a p38 MAPK-dependent manner. MKK6 SDTD is a mutant of MKK6. MKK6 SDTD Recombinant Human Active Protein Kinase is a recombinant MKK6 SDTD protein that can be used to study MKK6 SDTD-related functions .
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Cat. No.: HY-E70761
Research Areas:  

Cancer

The NPM1-ALK protein contains the NPM1 oligomerization motif and the ALK catalytic domain, is constitutively activated through autophosphorylation, and mediates malignant cell transformation by activating downstream effectors including STAT3. NPM1 ALK F1174L Recombinant Human Active Protein Kinase is a recombinant NPM1 ALK F1174L protein that can be used to study NPM1 ALK F1174L-related functions .
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Cat. No.: HY-E70776
Target:  

RET

Research Areas:  

Cancer

Rearranged during transfection (RET) is a transmembrane receptor protein tyrosine kinase (PTK) activated normally by forming ternary complexes with its cognate ligands and co-receptors. RET alterations by point mutations and gene fusions were found in diverse cancers. RET S891A is a mutant of RET. RET S891A Recombinant Human Active Protein Kinase is a recombinant RET S891A protein that can be used to study RET S891A-related functions .
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Cat. No.: HY-E70778
Target:  

RET

Research Areas:  

Cancer

Rearranged during transfection (RET) is a transmembrane receptor protein tyrosine kinase (PTK) activated normally by forming ternary complexes with its cognate ligands and co-receptors. RET alterations by point mutations and gene fusions were found in diverse cancers. RET V804L is a mutant of RET. RET V804L Recombinant Human Active Protein Kinase is a recombinant RET V804L protein that can be used to study RET V804L-related functions .
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Cat. No.: HY-116580
CAS No.: 1227163-49-6
Target:  

Endogenous Metabolite

Research Areas:  

Neurological Disease

AZD-3289 is a potent BACE1 inhibitor with potential Alzheimer's disease inhibitory activity. The application of AZD-3289 is intended to slow the pathological progression of Alzheimer's disease by inhibiting the production of β-amyloid protein. The development of AZD-3289 responds to the need to reduce neurodegenerative changes associated with Alzheimer's disease. As a BACE1 inhibitor, AZD-3289 can effectively reduce the accumulation of β-amyloid peptide in the brain, which may improve cognitive function .
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Cat. No.: HY-124086
CAS No.: 1417436-52-2
Target:  

5-HT Receptor

Research Areas:  

Neurological Disease

BHQ-O-5HT is a light-activated caged 5-HT protected by a BHQ group. When exposed to light at 365 or 740 nm, BHQ-O-5HT releases 5-HT through 1 or 2 photon excitation, respectively. BHQ-O-5HT can be manipulated in space and time to explore the role of 5-HT in regulating mood, appetite, memory, learning, and other cognitive functions .
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Cat. No.: HY-16697R
CAS No.: 834903-43-4
Target:  

GPR55

Research Areas:  

Cancer

CID 16020046 (Standard) is the analytical standard of CID 16020046. This product is intended for research and analytical applications. CID 16020046 is a potent and selective GPR55 antagonist and inhibits GPR55 constitutive activity with an IC50 of 0.15 μM. CID 16020046 inhibits GPR55-mediated Ca2+ signaling and GPR55-mediated ERK1/2 phosphorylation. CID 16020046 reduces wound healing in endothelial cells and is involved in the regulation of platelet function .
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Cat. No.: HY-177573
CAS No.: 89210-68-4
Target:  

GABA Receptor

Research Areas:  

Neurological Disease

Cholesteryl γ-aminobutyrate is a γ-aminobutyric acid (GABA)-mimetic prodrug. Cholesteryl γ-aminobutyrate inhibits the orthodromically-evoked discharge of pyramidal cells in the CA1 region of the hippocampus. Cholesteryl γ-aminobutyrate suppresses the open-field activity of mice and rats in a dose-dependent manner and inhibits Bicuculline (HY-N0219)-induced seizures in mice. Cholesteryl γ-aminobutyrate can be used for the study of CNS diseases related to impaired GABAergic neuronal function .
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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-E70691
Target:  

CDK

Research Areas:  

Cancer

CLK1 is one of the dual specificity kinases and is the founding member of the 'LAMMER' family of kinases. CLK1 activity is positively regulated by phosphorylation on either tyrosine residues or serine/threonine residues, and is negatively regulated by steric constraints mediated by the N-terminal domain, as well as, by phosphorylation on a subset of serine/threonine residues within the catalytic domain. CLK1 Recombinant Human Active Protein Kinase is a recombinant CLK1 protein that can be used to study CLK1-related functions .
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Cat. No.: HY-E70715
Target:  

EGFR

Research Areas:  

Cancer

The erbB family comprises 4 structurally related receptors: ErbB1 (EGFR), ErbB2 (HER2-neu), ErbB3 and ErbB4. On ligand stimulation, the receptor forms either homodimers or heterodimers, which activate their cytoplasmic domain. ERBB2 775YVMA776 Recombinant Human Active Protein Kinase is a recombinant ERBB2 775YVMA776 protein that can be used to study ERBB2 775YVMA776-related functions .
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Cat. No.: HY-E70716
Target:  

FAK

Research Areas:  

Cancer

Focal adhesion kinase (FAK), a non-receptor tyrosine kinase in the cytoplasm, couples with integrins and growth factor receptors to regulate cell adhesion, proliferation, migration, invasion, and metastasis. FAK is overexpressed and aberrantly activated in many cancer types, including triple negative breast cancer (TNBC). FAK aa411-686 Recombinant Human Active Protein Kinase is a recombinant FAK aa411-686 protein that can be used to study FAK aa411-686-related functions .
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Cat. No.: HY-E70721
Target:  

FGFR

Research Areas:  

Cancer

FGFR4 is a transcriptional target of the PAX3-FOXO1 fusion gene. FGFR4 expression is significantly higher in rhabdomyosarcoma. FGFR3 K650E is a mutant of FGFR3 that may be present in rhabdomyosarcoma. FGFR4 N535K Recombinant Human Active Protein Kinase is a recombinant FGFR4 N535K protein that can be used to study FGFR4 N535K-related functions .
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