E3 ligase Ligand 8
E3 ligase Ligand 8 is a versatile small-molecule ligand specifically developed for E3 ligase recruitment in the design and synthesis of PROTAC (Proteolysis Targeting Chimera) molecules. This compound serves as a key component in targeted protein degradation, enabling the recruitment of E3 ubiquitin ligases to target proteins for selective ubiquitination and proteasomal degradation. Classified as an "E3 Ligase Ligand," E3 ligase Ligand 8 is particularly suitable for creating degraders that harness ubiquitin-proteasome system machinery in chemical biology and drug discovery research. Its structural compatibility makes it an excellent candidate for linker attachment, facilitating the development of novel therapeutics aimed at previously undruggable disease targets through the PROTAC mechanism.
Structure of 1225383-33-4
Assurance
Delivery
Support
* For research and manufacturing use only. Not for human or clinical use.
| Size | Price | Stock | Quantity |
|---|---|---|---|
| -- | $-- | In stock |
Looking for different specifications? Click to request a custom quote!
Capabilities & Facilities
- Comprehensive PROTAC Platform
- Scientific Expertise & Technical Support
- Custom Synthesis & Design Service
- Extensive Product Coverage
- Cutting-Edge Innovation
- Fast Delivery & Global Support
- 24/7 customer service
- 100% quality assurance
Popular Publications Citing BOC Sciences Products
Background Introduction
E3 ligases are pivotal enzymes in the ubiquitin-proteasome system, responsible for the selective ubiquitination and proteasomal degradation of target proteins. PROTACs (Proteolysis Targeting Chimeras) utilize ligands capable of binding specific E3 ligases to mediate targeted protein degradation, broadening the scope of druggable targets. E3 ligase Ligand 8 is a small-molecule ligand specifically engineered for high-affinity binding to a designated E3 ligase, serving as a critical component in the design, synthesis, and application of PROTAC molecules.
Mechanism
E3 ligase Ligand 8 operates by effectively recruiting its target E3 ligase to the PROTAC heterobifunctional molecule. Once incorporated into a PROTAC structure, Ligand 8 binds to the E3 ligase and brings it into proximity with the protein of interest via a linker and a target protein ligand. This induced proximity facilitates the transfer of ubiquitin molecules from the E3 ligase complex to the target protein, thereby marking it for recognition and degradation by the 26S proteasome. The chemical structure of Ligand 8 ensures selectivity and stability, serving as a robust anchor point for linker installation and PROTAC assembly.
Applications
E3 ligase Ligand 8 is an invaluable building block for next-generation therapeutics and chemical biology tools targeting protein homeostasis. Typical applications include:
• Synthesis of E3 ligase recruiting elements in novel PROTACs for degradation of disease-relevant proteins.• Development of molecular glues and heterobifunctional degraders to study protein function and validate new drug targets.
• High-throughput screening and SAR (structure-activity relationship) optimization in drug discovery programs focused on targeted protein degradation.
• Custom research, including the creation of PROTAC libraries and advanced chemical probes for academic and pharmaceutical research.
Ligand 8's tailor-made properties enable flexible, efficient conjugation strategies, promoting faster innovation and breakthroughs in the field of targeted protein degradation.
• Consistent batch-to-batch reproducibility with complete QC documentation
• Supplied with COA, MSDS, and analytical data for traceability
• Reliable global shipping with stability-guaranteed packaging
• Dedicated technical support and optional custom synthesis service
• Demonstrates strong binding affinity to CRBN, VHL, or other E3 ligases
• Enables stable E3 ligase recruitment for targeted protein degradation
• Optimized for high-affinity binding to E3 ligases, enabling efficient PROTAC development.
• Versatile structure supports customization in drug discovery workflows targeting protein degradation.
* Our calculator is based on the following equation:
Concentration (start) x Volume (start) = Concentration (final) x Volume (final)
It is commonly abbreviated as: C1V1 = C2V2
Related Product Recommendations
Please contact us with any specific requirements and we will get back to you as soon as possible.





