930822
3-[1,3-Dihydro-4-(5-hydroxy-1-pentyn-1-yl)-1-oxo-2H-isoindol-2-yl]-2,6-piperidinedione
≥95.0%
Sinônimo(s):
2,6-Piperidinedione, 3-[1,3-dihydro-4-(5-hydroxy-1-pentyn-1-yl)-1-oxo-2H-isoindol-2-yl]
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About This Item
Produtos recomendados
Nível de qualidade
Ensaio
≥95.0%
forma
powder
grupo funcional
hydroxyl
temperatura de armazenamento
2-8°C
Categorias relacionadas
Aplicação
3-[1,3-Dihydro-4-(5-hydroxy-1-pentyn-1-yl)-1-oxo-2H-isoindol-2-yl]-2,6-piperidinedione is a functionalized cereblon (CRBN) ligand used in the development of lenalidomide-based protein degrader building blocks. Can be activated by many nucleophiles or form ether linkages through its terminal hydroxyl group. A basic building block for development of a protein degrader library.
Technology Spotlight: Degrader Building Blocks for Targeted Protein Degradation
Protein Degrader Building Blocks
Technology Spotlight: Degrader Building Blocks for Targeted Protein Degradation
Protein Degrader Building Blocks
Outras notas
Targeted Protein Degradation by Small Molecules
Destruction of DNA-Binding Proteins by Programmable Oligonucleotide PROTAC (O′PROTAC): Effective Targeting of LEF1 and ERG
Small-Molecule PROTACS: New Approaches to Protein Degradation
Targeted Protein Degradation: from Chemical Biology to Drug Discovery
Impact of linker length on the activity of PROTACs
Destruction of DNA-Binding Proteins by Programmable Oligonucleotide PROTAC (O′PROTAC): Effective Targeting of LEF1 and ERG
Small-Molecule PROTACS: New Approaches to Protein Degradation
Targeted Protein Degradation: from Chemical Biology to Drug Discovery
Impact of linker length on the activity of PROTACs
Informações legais
PROTAC®
PROTAC is a registered trademark of Arvinas Operations, Inc., and is used under license
Código de classe de armazenamento
11 - Combustible Solids
Classe de risco de água (WGK)
WGK 3
Ponto de fulgor (°F)
Not applicable
Ponto de fulgor (°C)
Not applicable
Certificados de análise (COA)
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Annual review of pharmacology and toxicology, 57, 107-123 (2016-10-13)
Protein homeostasis networks are highly regulated systems responsible for maintaining the health and productivity of cells. Whereas therapeutics have been developed to disrupt protein homeostasis, more recently identified techniques have been used to repurpose homeostatic networks to effect degradation of
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