BTX-6654
BTX-6654 is a SOS1 PROTAC degrader. BTX-6654 induces ubiquitination and degradation of SOS1 via the proteasomal pathway by bridging SOS1 with the E3 ligase CRBN to form a ternary complex, thereby blocking KRAS activation and downregulating the MAPK signaling pathway (pERK/pS6), and ultimately inhibiting tumor growth. BTX-6654 can be used in research on various cancers driven by KRAS mutations.
(Pink: SOS1 ligand (HY-175896); Blue: Cereblon ligand (HY-138881); Black: linker).
Nos produits utilisent uniquement pour la recherche. Nous ne vendons pas aux patients.
- Formule: C50H57F4N9O5
- Masse moléculaire:940.04
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Stockage:
Please store the product under the recommended conditions in the Certificate of Analysis.
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Activité biologique
Description
Cellular Effect
|
Cell Line
|
Type | Value | Description | References |
|---|---|---|---|---|
| NCI-H2009 | IC50 |
26.8 nM
|
Cell viability inhibitory activity against human KRAS G12A heterozygous lung NCI-H2009 cells.
Cell viability inhibitory activity against human KRAS G12A heterozygous lung NCI-H2009 cells.
|
38224565 |
| NCI-H1573 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12A heterozygous lung NCI-H1573 cells.
Cell viability inhibitory activity against human KRAS G12A heterozygous lung NCI-H1573 cells.
|
38224565 |
| SW837 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12C homozygous colon SW837 cells.
Cell viability inhibitory activity against human KRAS G12C homozygous colon SW837 cells.
|
38224565 |
| NCI-H1792 | IC50 |
107.2 nM
|
Cell viability inhibitory activity against human KRAS G12C heterozygous lung NCI-H1792 cells.
Cell viability inhibitory activity against human KRAS G12C heterozygous lung NCI-H1792 cells.
|
38224565 |
| NCI-H23 | IC50 |
34.2 nM
|
Cell viability inhibitory activity against human KRAS G12C heterozygous lung NCI-H23 cells.
Cell viability inhibitory activity against human KRAS G12C heterozygous lung NCI-H23 cells.
|
38224565 |
| NCI-H358 | IC50 |
7.6 nM
|
Cell viability inhibitory activity against human KRAS G12C heterozygous lung NCI-H358 cells.
Cell viability inhibitory activity against human KRAS G12C heterozygous lung NCI-H358 cells.
|
38224565 |
| NCI-H2122 | IC50 |
51.5 nM
|
Cell viability inhibitory activity against human KRAS G12C homozygous lung NCI-H2122 cells.
Cell viability inhibitory activity against human KRAS G12C homozygous lung NCI-H2122 cells.
|
38224565 |
| NCI-H2030 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12C homozygous lung NCI-H2030 cells.
Cell viability inhibitory activity against human KRAS G12C homozygous lung NCI-H2030 cells.
|
38224565 |
| SW1573 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12C homozygous lung SW1573 cells.
Cell viability inhibitory activity against human KRAS G12C homozygous lung SW1573 cells.
|
38224565 |
| MIA PaCa-2 | IC50 |
1.2 nM
|
Cell viability inhibitory activity against human KRAS G12C homozygous pancreas MIA PaCa-2 cells.
Cell viability inhibitory activity against human KRAS G12C homozygous pancreas MIA PaCa-2 cells.
|
38224565 |
| GP2D cell | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12D heterozygous colon GP2D cells.
Cell viability inhibitory activity against human KRAS G12D heterozygous colon GP2D cells.
|
38224565 |
| LS-513 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12D heterozygous colon LS513 cells.
Cell viability inhibitory activity against human KRAS G12D heterozygous colon LS513 cells.
|
38224565 |
| A-427 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12D heterozygous colon A427 cells.
Cell viability inhibitory activity against human KRAS G12D heterozygous colon A427 cells.
|
38224565 |
| AGS | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12D heterozygous stomach AGS cells.
Cell viability inhibitory activity against human KRAS G12D heterozygous stomach AGS cells.
|
38224565 |
| SW-620 | IC50 |
52.5 nM
|
Cell viability inhibitory activity against human KRAS G12V homozygous colon SW620 cells.
Cell viability inhibitory activity against human KRAS G12V homozygous colon SW620 cells.
|
38224565 |
| COLO-668 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12V homozygous lung COLO 668 cells.
Cell viability inhibitory activity against human KRAS G12V homozygous lung COLO 668 cells.
|
38224565 |
| LCLC-97TM1 | IC50 |
21.8 nM
|
Cell viability inhibitory activity against human KRAS G12V homozygous lung LCLC97-TM1 cells.
Cell viability inhibitory activity against human KRAS G12V homozygous lung LCLC97-TM1 cells.
|
38224565 |
| NCI-H441 | IC50 |
14.7 nM
|
Cell viability inhibitory activity against human KRAS G12V heterozygous lung NCI-H441 cells.
Cell viability inhibitory activity against human KRAS G12V heterozygous lung NCI-H441 cells.
|
38224565 |
| NCI-H727 | IC50 |
135.3 nM
|
Cell viability inhibitory activity against human KRAS G12V heterozygous lung NCI-H727 cells.
Cell viability inhibitory activity against human KRAS G12V heterozygous lung NCI-H727 cells.
|
38224565 |
| NCI-H2444 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G12V homozygous lung NCI-H2444 cells.
Cell viability inhibitory activity against human KRAS G12V homozygous lung NCI-H2444 cells.
|
38224565 |
| A549 | IC50 |
1.2 nM
|
Cell viability inhibitory activity against human KRAS G12S homozygous lung A549 cells.
Cell viability inhibitory activity against human KRAS G12S homozygous lung A549 cells.
|
38224565 |
| LS-123 | IC50 |
18.8 nM
|
Cell viability inhibitory activity against human KRAS G12S heterozygous colon LS123 cells.
Cell viability inhibitory activity against human KRAS G12S heterozygous colon LS123 cells.
|
38224565 |
| NCI-H1734 | IC50 |
68.5 nM
|
Cell viability inhibitory activity against human KRAS G13C heterozygous lung NCI-H1734 cells.
Cell viability inhibitory activity against human KRAS G13C heterozygous lung NCI-H1734 cells.
|
38224565 |
| TOV21G | IC50 |
47.0 nM
|
Cell viability inhibitory activity against human KRAS G13C heterozygous ovary TOV-21G cells.
Cell viability inhibitory activity against human KRAS G13C heterozygous ovary TOV-21G cells.
|
38224565 |
| DLD-1 | IC50 |
111.3 nM
|
Cell viability inhibitory activity against human KRAS G13D heterozygous colon DLD-1 cells.
Cell viability inhibitory activity against human KRAS G13D heterozygous colon DLD-1 cells.
|
38224565 |
| LoVo | IC50 |
73.7 nM
|
Cell viability inhibitory activity against human KRAS G13D heterozygous colon LoVo cells.
Cell viability inhibitory activity against human KRAS G13D heterozygous colon LoVo cells.
|
38224565 |
| HCT-116 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G13D heterozygous colon HCT116 cells.
Cell viability inhibitory activity against human KRAS G13D heterozygous colon HCT116 cells.
|
38224565 |
| NCI-H1944 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS G13D heterozygous lung NCI-H1944 cells.
Cell viability inhibitory activity against human KRAS G13D heterozygous lung NCI-H1944 cells.
|
38224565 |
| SJSA-1 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS Q61H heterozygous bone SJSA-1 cells.
Cell viability inhibitory activity against human KRAS Q61H heterozygous bone SJSA-1 cells.
|
38224565 |
| NCI-H460 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS Q61H homozygous lung NCI-H460 cells.
Cell viability inhibitory activity against human KRAS Q61H homozygous lung NCI-H460 cells.
|
38224565 |
| MKN-1 | IC50 |
26.2 nM
|
Cell viability inhibitory activity against human KRAS wild-type amplified stomach MKN-1 cells.
Cell viability inhibitory activity against human KRAS wild-type amplified stomach MKN-1 cells.
|
38224565 |
| RL95-2 | IC50 |
8.5 nM
|
Cell viability inhibitory activity against human HRAS Q61H heterozygous uterus RL95-2 cells.
Cell viability inhibitory activity against human HRAS Q61H heterozygous uterus RL95-2 cells.
|
38224565 |
| NCI-H1299 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human NRAS Q61K heterozygous lung NCI-H1299 cells.
Cell viability inhibitory activity against human NRAS Q61K heterozygous lung NCI-H1299 cells.
|
38224565 |
| EBC-1 | IC50 |
17.8 nM
|
Cell viability inhibitory activity against human EGFR L858R mutant lung EBC-1 cells.
Cell viability inhibitory activity against human EGFR L858R mutant lung EBC-1 cells.
|
38224565 |
| NCI-H1975 | IC50 |
2.4 nM
|
Cell viability inhibitory activity against human EGFR L858R/T790M mutant lung NCI-H1975 cells.
Cell viability inhibitory activity against human EGFR L858R/T790M mutant lung NCI-H1975 cells.
|
38224565 |
| HCC827 | IC50 |
63.4 nM
|
Cell viability inhibitory activity against human EGFR ex19del mutant lung HCC-827 cells.
Cell viability inhibitory activity against human EGFR ex19del mutant lung HCC-827 cells.
|
38224565 |
| U-87MG ATCC | IC50 |
12.9 nM
|
Cell viability inhibitory activity against human NF1 F1423M heterozygous brain U87MG cells.
Cell viability inhibitory activity against human NF1 F1423M heterozygous brain U87MG cells.
|
38224565 |
| SK-N-FI | IC50 |
43.7 nM
|
Cell viability inhibitory activity against human NF1 partial deletion homozygous brain SK-N-FI cells.
Cell viability inhibitory activity against human NF1 partial deletion homozygous brain SK-N-FI cells.
|
38224565 |
| A2058 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human BRAF V600E heterozygous skin A2058 cells.
Cell viability inhibitory activity against human BRAF V600E heterozygous skin A2058 cells.
|
38224565 |
| A-375 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human BRAF V600E homozygous skin A375 cells.
Cell viability inhibitory activity against human BRAF V600E homozygous skin A375 cells.
|
38224565 |
| NCI-H520 | IC50 |
>2500 nM
|
Cell viability inhibitory activity against human KRAS-null lung NCI-H520 cells.
Cell viability inhibitory activity against human KRAS-null lung NCI-H520 cells.
|
38224565 |
In Vitro
BTX-6654 potently and specifically degrades SOS1 in KRAS-mutant cancer cells, with a DC50 value of < 11 nM; it also inhibits the downstream pERK and pS6 signaling pathways, with corresponding IC50 values of 1-32 nM and 4-22 nM, respectively[1].
BTX-6654 potently inhibits the viability of specific human cancer cell lines (including MIA PaCa-2, A549, NCI-H1975 and SNU-175), with IC50 values as low as 1.2 nM, but shows no significant activity against many other cancer cell lines with specific KRAS, NRAS, BRAF, NF1 mutations or KRAS deletion status (IC50 >2500 nM)[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
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Cell Line:MIA PaCa-2, LoVo
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Concentration:50, 200 nM
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Incubation Time:1, 2, 4, 6 h
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Result:Resulted in time-dependent, maximal degradation of SOS1 within 6 hours.
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Cell Line:MIA PaCa-2, LoVo
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Concentration:50, 200 nmol/L (+ CC-220, MG132 or MLN4924)
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Incubation Time:6 h
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Result:Induced degradation of SOS1 was completely blocked by the CRBN ligand or proteasome/NEDD8 inhibitors.
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Cell Line:MIA PaCa-2 (3D)
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Concentration:0.8, 4, 20, 100, 500 nM
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Incubation Time:24 h
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Result:Significantly inhibited the downstream phosphorylation of pERK and pS6.
In Vivo
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Animal Model:BALB/c nude mice (6-8 weeks old, female) were subcutaneously inoculated with NCI-H358 cells in the right flank[1]
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Dosage:10, 50 mg/kg
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Administration:i.p.; single dose; 2, 8, 24 h
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Result:Downregulated SOS1 and pERK proteins in histology.
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Animal Model:BALB/c nude mice (6-8 weeks old, female) were subcutaneously inoculated with NCI-H358 cells or MIA PaCa-2 cells in the right flank[1]
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Dosage:2, 10 mg/kg
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Administration:i.p.; twice daily; 28 days
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Result:Inhibited tumor growth in a dose-dependent manner.
No significant effect on animal body weight.
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Animal Model:BALB/c nude mice (6-8 weeks old, female) were subcutaneously inoculated with xMIA PaCa-2 cells in the right flank[1]
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Dosage:10 mg/kg (+ 10 mg/kg Sotorasib or 0.125 mg/kg Trametinib)
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Administration:i.p.; twice daily; 30 days
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Result:A trend toward profound tumor regression was observed in the combination therapy group.
Chemical Information
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Masse moléculaire 940.04
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Formule C50H57F4N9O5
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SMILES
FC(F)(F)C1=C(C)C([C@@H](C)NC2=NN=C(C)C3=CC=C(N4CCN(C(C5CCN(C(CCN6CCC(C7=CC(CN(C8CCC(NC8=O)=O)C9=O)=C9C=C7F)CC6)=O)CC5)=O)CC4)C=C32)=CC=C1
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Livraison
Room temperature in continental US; may vary elsewhere.
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Stockage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocole
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Patient-Derived Xenograft (PDX)
Patient-derived xenograft (PDX) models are generated by engrafting primary human tumor tissue directly into immunodeficient mice, allowing in vivo propagation of patient tumor biology without initial in vitro adaptation. These models are used to preserve key histopathological and molecular characteristics of the original tumor and enable assessment of tumor growth dynamics and therapeutic response in a living organism. The biological readout is tumor engraftment and subsequent growth in the murine host, which reflects the ability of human tumor cells to survive, vascularize, and expand in an immunocompromised microenvironment.
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Patient-Derived Orthotopic Xenograft (PDOX)
Patient-derived orthotopic xenograft (PDOX) modeling implants fresh patient tumor tissue or patient-derived tumor cells into the anatomically corresponding organ or tissue site of immunodeficient mice, usually by surgical orthotopic implantation, to preserve patient tumor histology, local microenvironmental context, invasion, metastatic behavior, and treatment-response features better than subcutaneous implantation. PDOX readouts include tumor engraftment, orthotopic tumor growth, local invasion, metastasis, recurrence after resection, histologic similarity to the donor tumor, biomarker retention, molecular concordance, survival, and response or resistance to therapy. PDOX models are used for preclinical drug testing and individualized therapy evaluation, but engraftment success varies by tumor type and specimen quality.
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Subcutaneous Cell-Line-Derived Xenograft
Subcutaneous cell-line-derived xenograft (CDX) models are established by implanting cultured human cancer cell lines into immunodeficient mice, where the injected cells form localized tumors that can be monitored in vivo as a measure of tumorigenic potential, growth kinetics, and treatment response. These models are widely used in oncology research because they allow reproducible tumor formation and enable comparative assessment of tumor growth between different cell lines or genetic manipulations in a controlled in vivo microenvironment. Subcutaneous implantation of cancer cells in immunodeficient mice is a standard approach for evaluating tumor growth behavior and therapeutic response across multiple cancer types, including prostate, esophageal, pancreatic, and colon cancer models.
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Orthotopic Cell-Line Xenograft
Orthotopic cell-line xenograft models involve implantation of human cancer cell lines into the anatomically corresponding organ of immunodeficient mice to reproduce tumor growth within a native microenvironment, enabling more clinically relevant tumor behavior compared with subcutaneous models. These models are widely used because orthotopic placement better recapitulates tumor progression, including invasion and metastatic spread, which are often underrepresented in heterotopic implantation systems. Compared with conventional xenografts, orthotopic implantation is described as more technically complex but provides improved simulation of tumor-microenvironment interactions and metastatic behavior, making it particularly valuable for translational oncology research. Surgical orthotopic implantation approaches have been emphasized as enabling faithful reproduction of clinical cancer features, including metastasis and disease progression patterns that align with the tumor’s organ of origi
Pureté et documentation
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Fiche technique (276 KB)
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SDS (252 KB)
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Instruction de manipulation (2659 KB)
Références
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)