(S)-DMP2
(S)-DMP2 is a benzoxaborole-derived photoaffinity probe that efficiently enriches eukaryotic translation initiation factor 4E (eIF4E) with stereoselectivity. (S)-DMP2 acts as a cap-binding competitive inhibitor that competes with the 7-methylguanosine cap of mRNA for binding at the cap-binding pocket of eIF4E, covalently modifies residues within this pocket, and impairs the cap-binding ability of eIF4E. (S)-DMP2 is applicable to research on eIF4E-related mechanisms and diseases.
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- Fòrmula: C16H17BFN3O3
- Peso molecular:329.13
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Almacenamiento:
Please store the product under the recommended conditions in the Certificate of Analysis.
Actividad biológica
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eIF4E |
(S)-DMP2 selectively enriches eIF4E in HEK293T cells[1].
(S)-DMP2 (5-100 μM) labels eIF4E in HEK293T cells in a dose-dependent manner. This labeling disrupts the epitope recognized by mouse anti-eIF4E antibody, but does not affect the epitope recognized by rabbit anti-eIF4E antibody[1].
(S)-DMP2 specifically binds to the cap-binding pocket of eIF4E and labels recombinant eIF4E in vitro, and this labeling process can be competitively blocked by m7GTPG and Taunton 12; in cellular assays, pretreatment with Taunton 12 inhibits the labeling of (S)-DMP2 and restores the binding of eIF4E antibody[1].
(S)-DMP2 tag impairs the cap-binding activity of eIF4E in HEK293T cells, as evidenced by the reduced binding of eIF4E to m7GTP-modified agarose microspheres[1].
(S)-DMP2 covalently modifies the Met101 and Glu103 residues within the cap-binding pocket of recombinantly expressed eIF4E[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
Chemical Information
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Peso molecular 329.13
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Fòrmula C16H17BFN3O3
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SMILES
FC1=CC=CC2=C1B(O)O[C@@H]2CNC(CCC3(N=N3)CCC#C)=O
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Envío
Room temperature in continental US; may vary elsewhere.
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Almacenamiento
Please store the product under the recommended conditions in the Certificate of Analysis.
Pureza y Documentación
Referencias
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)