WYE-354 |
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Catalog No.GC10662
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MTOR inhibitor,potent,ATP-competitive and cell-permeable
Products are for research use only. Not for human use. We do not sell to patients.
Cas No.: 1062169-56-5
Sample solution is provided at 25 µL, 10mM.
WYE-354 is a powerful and selective ATP-competitive kinase heterocyclic inhibitors with biochemical IC50 of 5 nM against mTOR.[1]
WYE-354 displays very specific selectivity to PI3K families (>100-fold to PI3K and >500-fold to PI3K), but it can’t inhibit some protein kinases. May cancer cell lines including MDA-MB-468 and U87MG can be inhibited by WYE-354 in 0.3–1 mM range.[1]
In-vitro study has proved that WYE-354 can inhibit substrate phosphorylation such as p-4E-BP1 T37/46 and p-Akt S473 by mTORC1 and mTORC2. WYE-354 can reduce Akt downstream function and block the propagation of the cancer cell lines with an IC50 value from sub-micromolar to micromolar range [3]. These effects were consistent with the G1 cell cycle arrest in two cell lines, including rapamycin-sensitive and rapamycin-resistant cells. It is believed to induce apoptosis, repress the global protein synthesis, and down-regulate many angiogenic factors.[3]
References:
[1] Qingsong Liu, Carson Thoreen, Jinhua Wang, David Sabatini, Nathanael S. Gray. mTOR mediated anti-cancer drug discovery. Drug Discovery Today. 2009. 6(2): 47-55.
[2] Shi-Yong Sun. mTOR kinase inhibitors as potential cancer therapeutic drugs. Cancer Letters. 28 October 2013. 340(1): 1-8.
| Cell experiment [1]: | |
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Cell lines |
HEK293 cells |
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Preparation method |
The solubility of this compound in DMSO is >10 mM. General tips for obtaining a higher concentration: Please warm the tube at 37 °C for 10 minutes and/or shake it in the ultrasonic bath for a while.Stock solution can be stored below -20°C for several months. |
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Reaction Conditions |
1 h; 5 μM |
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Applications |
To test directly the inhibition of mTORC2 catalytic activity in vitro, we immunoprecipitated mTORC2 and mTORC1 from HEK293 cells and performed immune-complex kinase assay of the mTORC2-specific substrate His6-AKT or the mTORC1 substrate His6-S6K. AKT (S473) phosphorylation was dose dependently inhibited by WYE-354. |
| Animal experiment [1]: | |
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Animal models |
BALB/c nu/nu female mice |
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Dosage form |
50 mg/kg; intraperitoneal injection |
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Applications |
Nude mice bearing the PTEN-null PC3MM2 tumors were administered i.p. with vehicle or 50 mg/kg WYE-354.Tumor lysates prepared at 1, 2, 4, and 6 hours after dosing were immunoblotted for levels of P-S6K(T389), P-AKT(S473), and P-AKT(T308). Quantification of the immunoblotting results indicated that WYE-354 completely inhibited P-S6K (T389) for at least 6 hours and substantially inhibited P-AKT(S473) for 6 hour. As expected, P-AKT(T308) in the same tumors was variably but not significantly inhibited. WYE-354 selectively inhibited P-AKT(S473) via targeting mTORC2. |
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Other notes |
Please test the solubility of all compounds indoor, and the actual solubility may slightly differ with the theoretical value. This is caused by an experimental system error and it is normal. |
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References: [1] Yu K, Toral-Barza L, Shi C, et al. Biochemical, cellular, and in vivo activity of novel ATP-competitive and selective inhibitors of the mammalian target of rapamycin[J]. Cancer research, 2009, 69(15): 6232-6240. | |
| Cas No. | 1062169-56-5 | SDF | |
| Chemical Name | methyl 4-[6-[4-(methoxycarbonylamino)phenyl]-4-morpholin-4-ylpyrazolo[3,4-d]pyrimidin-1-yl]piperidine-1-carboxylate | ||
| Canonical SMILES | COC(=O)NC1=CC=C(C=C1)C2=NC3=C(C=NN3C4CCN(CC4)C(=O)OC)C(=N2)N5CCOCC5 | ||
| Formula | C24H29N7O5 | M.Wt | 495.53 |
| Solubility | ≥ 49.6mg/mL in DMSO | Storage | Store at -20°C |
| General tips | Please select the appropriate solvent to prepare the stock solution according to the
solubility of the product in different solvents; once the solution is prepared, please store it in
separate packages to avoid product failure caused by repeated freezing and thawing.Storage method
and period of the stock solution: When stored at -80°C, please use it within 6 months; when stored
at -20°C, please use it within 1 month. To increase solubility, heat the tube to 37°C and then oscillate in an ultrasonic bath for some time. |
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| Shipping Condition | Evaluation sample solution: shipped with blue ice. All other sizes available: with RT, or with Blue Ice upon request. | ||
| Prepare stock solution | |||
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1 mg | 5 mg | 10 mg |
| 1 mM | 2.018 mL | 10.0902 mL | 20.1804 mL |
| 5 mM | 403.6 μL | 2.018 mL | 4.0361 mL |
| 10 mM | 201.8 μL | 1.009 mL | 2.018 mL |
Step 1: Enter information below (Recommended: An additional animal making an allowance for loss during the experiment)
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Calculation results:
Working concentration: mg/ml;
Method for preparing DMSO master liquid: mg drug pre-dissolved in μL DMSO ( Master liquid concentration mg/mL, Please contact us first if the concentration exceeds the DMSO solubility of the batch of drug. )
Method for preparing in vivo formulation: Take μL DMSO master liquid, next addμL PEG300, mix and clarify, next addμL Tween 80, mix and clarify, next add μL saline, mix and clarify.
Method for preparing in vivo formulation: Take μL DMSO master liquid, next add μL Corn oil, mix and clarify.
Note: 1. Please make sure the liquid is clear before adding the next solvent.
2. Be sure to add the solvent(s) in order. You must ensure that the solution obtained, in the previous addition, is a clear solution before proceeding to add the next solvent. Physical methods such as vortex, ultrasound or hot water bath can be used to aid dissolving.
3. All of the above co-solvents are available for purchase on the GlpBio website.
Quality Control & SDS
- View current batch:
- Purity: >98.00% Appearance: A solid
- COA (Certificate of Analysis)
- SDS (Safety Data Sheet)
- Datasheet
Average Rating: 5 (Based on Reviews and 13 reference(s) in Google Scholar.)















