Eragidomide

TargetMol
Product Code: TAR-T10765
Supplier: TargetMol
CodeSizePrice
TAR-T10765-1mg1mg£98.00
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TAR-T10765-5mg5mg£134.00
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TAR-T10765-1mL1 mL * 10 mM (in DMSO)£135.00
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TAR-T10765-10mg10mg£185.00
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TAR-T10765-25mg25mg£310.00
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TAR-T10765-50mg50mg£464.00
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TAR-T10765-100mg100mg£653.00
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Overview

Regulatory Status: RUO
Shipping:
cool pack
Storage:
-20℃

Images

1 / 1

Further Information

Bioactivity:
Cereblon modulator 1 is a cereblon (CRBN) E3 ligase modulator. It specifically binds to CRBN, thereby affecting the activity of the ubiquitin E3 ligase complex.
Biological Applications:
The human body encodes over 600 different E3 ubiquitin ligases, but currently, only about 10 publicly disclosed E3 ligases are used in protein degradation research. Among them, two E3 ligases, CRBN and VHL12, have entered the clinical stage for protein degradation studies. Eragidomide (CC-90009) and Mezigdomide (CC-92480) are both CRBN E3 ligase modulators (CELMoD), exhibiting potent anti-tumor and immunomodulatory effects. They particularly induce immune-stimulatory effects and enhanced anti-tumor activity against multiple myeloma cells. Currently, they are undergoing clinical trials as potential treatments for diseases such as multiple myeloma. CELMoD stands for Cereblon E3 Ligase Modulator, and it is a small molecule that can bind to E3 ligases (such as CRBN). Subsequently, it recruits new substrate proteins for ubiquitination and proteasomal degradation. GSPT1, also known as G1 to S phase transition 1, is a crucial translation termination factor significantly overexpressed in various cancer tissues and cells. Molecular glue refers to a small molecule that can bind to E3 ligases (e.g., CRBN) and then recruit new substrate proteins for ubiquitination and proteasomal degradation.
CAS:
1860875-51-9
Formula:
C22H18ClF2N3O4
Long Description:
Eragidomide, also known as CC-90009 or Cereblon modulator 1, is a selective cereblon (CRBN) E3 ubiquitin ligase modulator with specificity towards GSPT1. It acts through molecular glue, selectively targeting GSPT1 for ubiquitination and proteasomal degradation via the CRL4CRBN pathway.
Mechanism of Action:
E3 ubiquitin ligases play a crucial role in protein degradation. Ubiquitin (Ub) is a small protein consisting of approximately 76 amino acids with a molecular weight of around 8.5 kDa, and it is widely present in all eukaryotic cells. The process in which ubiquitin is covalently attached to target proteins, under the catalytic action of a series of enzymes, is known as ubiquitination. This is a highly regulated post-translational modification of proteins that not only participates in protein degradation but also plays a vital role in regulating cellular functions. Ubiquitination typically involves the coordinated action of three enzymes: E1 ubiquitin-activating enzyme, E2 ubiquitin-conjugating enzyme, and E3 ubiquitin ligase. The process is as follows: 1. Ubiquitin-activating enzyme (E1) activates the ubiquitin molecule using ATP as an energy source. 2. E1 transfers the activated ubiquitin molecule to the ubiquitin-conjugating enzyme (E2). 3. Ubiquitin ligase (E3) facilitates the transfer of ubiquitin from the E2 enzyme to a specific lysine residue on the target protein. In summary, the coordinated action of ubiquitin ligases allows ubiquitin molecules to be covalently attached to target proteins, thereby regulating the function, stability, and localization of proteins. E3 ubiquitin ligases, as a critical final step, hold significant importance in the field of protein degradation and provide powerful tools for the development of novel drugs.
Molecular Weight:
461.85
Pathway:
Apoptosis
Purity:
0.9941
Research Area:
Haematological Oncology, Prostate Cancer, Immune Microenvironment, New drug discovery targeting protein degradation
SMILES:
FC(F)(C(=O)NCc1ccc2C(=O)N(Cc2c1)C1CCC(=O)NC1=O)c1ccc(Cl)cc1
Target:
Apoptosis

References

1. Ellen Filvaroff, et al. Methods for treating cancer and the use of biomarkers as a predictor of clinical sensitivity to therapies. WO2017120446A1. 2. CC-90009