22 Results for "

molecule glue

" in MedChemExpress (MCE) Product Catalog:
Products (22)

22 Results for "molecule glue" in MCE Product Catalog:

1
1 Cited Publications
Cat. No.: HY-10219G
CAS No.: 53123-88-9
Synonyms: Sirolimus (GMP); AY-22989 (GMP); NSC 226080 (GMP)
Rapamycin (Sirolimus) (GMP) is Rapamycin (HY-10219) produced by using GMP guidelines. GMP small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. Rapamycin (Sirolimus; AY 22989) is a potent and specific blood-brain barrier-transmissible mTOR inhibitor with an IC50 of 0.1 nM in HEK293 cells. Rapamycin is a molecular glue that binds FKBP12 and mTOR proteins together, thereby inhibiting mTOR kinase activity. Rapamycin binds to FKBP12 and specifically acts as an allosteric inhibitor of mTORC1. Rapamycin is an autophagy activator, an immunosuppressant .
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Cat. No.: HY-156730
CAS No.: 2502186-79-8
Purity:  96.17%
Target:  

Molecular Glues STAT

Research Areas:  

Cancer

KT-333 is a molecular glues that degrades STAT3 protein. KT-333 mediates the selective degradation of STAT3 through the ubiquitin-proteasome system by binding to STAT3 protein and E3 ubiquitin ligase von Hippel-Lindau protein (VHL). KT-333 has strong selectivity for STAT3 protein degradation and good antitumor activity. KT-333 can be used in the study of hematologic malignancies such as large granular lymphocytic leukemia (LGL-L), peripheral T-cell lymphoma (PTCL), and cutaneous T-cell lymphoma (CTCL) .
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Cat. No.: HY-145898
CAS No.: 2095780-08-6
Purity:  ≥95.0%
Synonyms: 14-D-Valine-TPL
Target:  

c-Myc Molecular Glues

Research Areas:  

Cancer

WBC100 (14-D-Valine-TPL) is a potent, selective, and orally active c-Myc molecule glue degrader. WBC100 is a c-Myc degrader and targets ubiquitin E3 ligase CHIP mediated 26S proteasome pathway. WBC100 is used for c-Myc overexpressing tumors research .
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Cat. No.: HY-158115
CAS No.: 3002056-30-3
Purity:  98.61%
Target:  

Molecular Glues Raf MEK

Research Areas:  

Cancer

NST-628 is a brain-permeable MAPK pathway molecule glue that inhibits RAF phosphorylation and MEK activation. NST-628 also binds RAF and prevents the formation of BRAF-CRAF and BRAF-ARAF heterodimers, effectively inhibiting the RAS-MAPK pathway. NST-628 inhibits RAS- and RAF-driven cancers and demonstrated potent inhibition in mutant KRAS, NRAS, BRAF class II/III, and NF1-mutant tumors .
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Cat. No.: HY-172931
CAS No.: 2734910-37-1
Research Areas:  

Cancer

DEG-35 is a CRBN-dependent, dual IKZF2 and CK1α molecule glue degrader, with DC50 values of 1.4 nM and 4.4 nM for CK1α and IKZF2, respectively. DEG-35 activates the p53 apoptosis pathway. DEG-35 can be used in the research for Acute Myeloid Leukemia (AML) .
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Cat. No.: HY-159098
dWIZ-1 is an orally active molecular glue and chemical probe targeting the WIZ transcription factor, which based on an IMiD backbone, binding to human WIZ with an affinity of 3.5 μM. dWIZ-1 recruits WIZ to the cereblon-DDB1 complex via its ZF7 domain, thereby triggering proteasome-dependent degradation of WIZ. dWIZ-1 significantly induces fetal hemoglobin expression in erythroblasts while reducing the level of inhibitory H3K9 dimethylation at WIZ binding sites such as the β-globin locus. Meanwhile, dWIZ-1 does not affect the proliferation and differentiation of erythroblasts, and no cytotoxicity is observed in in vitro cells or cynomolgus monkey models. dWIZ-1 serves as a critical tool molecule for investigating the mechanism and underlying pathways of sickle cell disease .
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Cat. No.: HY-144984
CAS No.: 2763260-30-4
Purity:  99.51%
Research Areas:  

Cancer

NRX-1933 is a type of molecular glue. NRX-1933 is a β-catenin:β-TrCP interaction enhancer for the development of small molecule degraders. NRX-1933 promotes the ubiquitination of mutated β-Catenin, leading to degradation. NRX-1933 can be applied to tumor research on abnormal activation of Wnt/β - catenin signaling pathway .
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Cat. No.: HY-163759
CAS No.: 3040301-46-7
Target:  

Molecular Glues HuR

Research Areas:  

Cancer

HuR degrader 2 (Compound 3) is a molecule glue, which targets RNA-binding protein Hu antigen R (HuR) and degrades 30% HuR at 0.1 μM. HuR degrader 2 inhibits the proliferation of cancer cell Colo-205, with IC50≤200 nM. HuR degrader 2 exhibits a high affinity with cereblon, with an HTRF ratio < 0.02 .
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Cat. No.: HY-10219GL
CAS No.: 53123-88-9
Purity:  98.8%
Synonyms: Sirolimus (GMP Like); AY-22989 (GMP Like); NSC 226080 (GMP Like)
Rapamycin (Sirolimus) GMP Like is Rapamycin (HY-10219) produced by using GMP like guidelines. GMP Like small molecules works appropriately as an auxiliary reagent for cell therapy manufacture. Rapamycin (Sirolimus; AY 22989) is a potent and specific blood-brain barrier-transmissible mTOR inhibitor with an IC50 of 0.1 nM in HEK293 cells. Rapamycin is a molecular glue that binds FKBP12 and mTOR proteins together, thereby inhibiting mTOR kinase activity. Rapamycin binds to FKBP12 and specifically acts as an allosteric inhibitor of mTORC1. Rapamycin is an autophagy activator, an immunosuppressant .
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Cat. No.: HY-156730A
CAS No.: 2839758-34-6
Target:  

Molecular Glues STAT

Research Areas:  

Cancer

KT-333 ammonium (Compound A) is a molecular glues that degrades STAT3 protein. KT-333 ammonium mediates the selective degradation of STAT3 through the ubiquitin-proteasome system by binding to STAT3 protein and E3 ubiquitin ligase von Hippel-Lindau protein (VHL). KT-333 ammonium has strong selectivity for STAT3 protein degradation and good antitumor activity. KT-333 ammonium can be used in the study of hematologic malignancies such as large granular lymphocytic leukemia (LGL-L), peripheral T-cell lymphoma (PTCL), and cutaneous T-cell lymphoma (CTCL) .
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Cat. No.: HY-W1005067
CAS No.: 2191110-79-7
Research Areas:  

Others

EN171 is a covalent ligand that covalently targets both C38 and C96 on 14-3-3 to enhance 14-3-3 interactions with ERα, YAP and TAZ, leading to impaired estrogen receptor and Hippo pathway transcriptional activity. EN171 can not only be used as a molecular glue to enhance native protein interactions but can also be used as a covalent 14-3-3 recruiter in heterobifunctional molecules to sequester nuclear neo-substrates such as BRD4 and BLC6 into the cytosol .
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Cat. No.: HY-178345
Synonyms: ZZ7
Research Areas:  

Cancer

ZZ7-23-022 (ZZ7) is a selective BRD9 molecule glue degrader. ZZ7-23-022 effectively degrades BRD9 in synovial sarcoma cells, but does not affect cardiomyocytes. ZZ7-23-022 can be used for the research of cancer .
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Cat. No.: HY-163810
CAS No.: 3033018-77-5
Research Areas:  

Cancer

BRD9 Degrader-3 (compound B20) is a BRD9 molecular glue, with a DC50 of <1.25 nM .
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Cat. No.: HY-156730B
CAS No.: 2502186-80-1
Target:  

Molecular Glues STAT

Research Areas:  

Cancer

KT-333 diammonium is a molecular glues that degrades STAT3 protein. KT-333 diammonium mediates the selective degradation of STAT3 through the ubiquitin-proteasome system by binding to STAT3 protein and E3 ubiquitin ligase von Hippel-Lindau protein (VHL). KT-333 diammonium has strong selectivity for STAT3 protein degradation and good antitumor activity. KT-333 diammonium can be used in the study of hematologic malignancies such as large granular lymphocytic leukemia (LGL-L), peripheral T-cell lymphoma (PTCL), and cutaneous T-cell lymphoma (CTCL) .
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Cat. No.: HY-179560
Research Areas:  

Cancer

PMV6-PEG4-BI2536 is an RIPTAC-like bifunctional molecule that promotes the formation of the p53 Y220C-PLK1 ternary complex (EC50 = 1.4 μM). PMV6-PEG4-BI2536 causes PLK1 mislocalization and inhibits PLK1 activity, inducing G2/M phase arrest and apoptosis in p53 Y220C-mutant cells, while sparing cells with wild-type TP53. PMV6-PEG4-BI2536 can be used in research on uterine, gastric, pancreatic, prostate, and breast cancers harboring the p53 Y220C mutation. PMV6-PEG4-BI2536 is composed of PMV6 (a p53 Y220C mutant-binding ligand), PEG4 (a linker), and BI2536 (HY-159493) (a PLK inhibitor) .
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Cat. No.: HY-153805
CAS No.: 1373391-77-5
Target:  

Molecular Glues

Research Areas:  

Cancer

Z-NCTS is an RNA mismatch binding molecule that recognizes the 5’-r(XGG)-3’/5’-r(XGG)-3’ sequence (X=U or A) and acts as a molecular glue for RNA .
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Cat. No.: HY-L918
317 compounds

Targeted Protein Degradation (TPD) is a novel and promising approach to drug development. It shows great potential for targeting proteins traditionally considered "undruggable" due to the lack of enzymatic function and absence of binding sites by tagging them for degradation or recruiting natural degradation mechanisms.

Molecular glues are a type of small-molecule degraders that primarily induce novel interactions between E3 ubiquitin ligases and target proteins, forming ternary complexes that lead to protein ubiquitination and subsequent proteasomal degradation. Compared with PROTACs, molecular glues generally have lower molecular weights, higher cell permeability, and better drug-like properties. Additionally, the design of molecular glues is relatively simple, without the requirements for complex linkers and ligand optimization. As a result, molecular glues have gradually emerged as a promising therapeutic approach for various diseases.

Multiple types of molecular glues have been reported previously. Analysis of co-crystal complex structures reveals that CRBN-related molecular glues are more versatile. Therefore, MCE researchers select active molecules related to these targets as probes for artificial intelligence (AI) screening.Subsequently, molecular docking technology was used to verify whether the screened molecules retained the key pharmacophore features. Ultimately, we obtained 317 molecular glue analogs, and these compounds serve as powerful tools for the research of molecular glues.

Cat. No.: HY-L936V0
11412 compounds

Molecular Glue Virtual Library is constructed using generative AI technology, integrating the structural features, activity data of known molecular glues, and interaction information of ternary complexes (target protein-E3-molecular glue). Endowed with structural novelty, drug-likeness, diversity and synthesizability, it is applicable to molecular glue-based AI drug screening and large-scale virtual screening.

MCE builds this library based on high-quality molecular building blocks by virtue of robust computing power, coupled with rigorous reaction rules and optimized compound generation strategies. To ensure library quality, molecules with high synthetic difficulty, poor drug-likeness, PAINS and other undesirable molecules are excluded first. Subsequently, scaffold-based compound analysis is performed to screen drug-like diverse molecules for synthesizability evaluation; those with excessively high synthetic difficulty are removed, ultimately forming a large-scale molecular glue virtual library with structural diversity, synthesizability and drug-likeness.

Compounds in the library can be synthesized in only 1-2 chemical reaction steps. With MCE’s experienced chemical synthesis team, custom synthesis of different scales from milligram to kilogram can be easily achieved to meet diverse customer needs.

Cat. No.: HY-180973
Target:  

Ligands for E3 Ligase

Research Areas:  

Others

CRBN ligand-893 (Compound 4) is a CRBN ligand with a Kd of 0.2 μM. CRBN ligand-893 forms a PROTAC molecule by connecting to the target protein ligand via a linker. CRBN ligand-893 can also be used in molecular glue research .
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Cat. No.: HY-L935
1039 compounds

POI (Protein of Interest) refers to the target protein, namely the disease-causing protein or key functional protein that undergoes degradation or functional modulation in molecular glue-mediated processes. The Molecular Glue POI Library consists of a series of fragments that can specifically bind to different types of POIs. As key components of molecular glues, these ligands form stable interactions with target proteins, laying the foundation for molecular glues to induce the interaction between POIs and E3 ubiquitin ligases. The covered POIs include various types such as cancer-associated GSPT1, androgen receptors, and abnormally aggregated proteins linked to neurodegenerative diseases.

This fragment library can be applied to the screening and optimization of targeted protein degraders. By screening ligands with high affinity and strong selectivity for specific POIs from the library, core structures can be identified to develop novel molecular glues. For instance, optimization of ligands targeting GSPT1 has yielded molecular glue degraders with enhanced degradation activity. Since many POIs are difficult to drug due to the lack of traditional small-molecule binding pockets, some ligands in the POI Ligand Library can modulate such POIs by inducing protein-protein interactions, thereby further expanding the scope of drug discovery for undruggable targets.

MCE has compiled a POI Fragment Library comprising thousands of POI fragments with molecular weights ranging from 150 to 400. This compound library can be widely applied in Molecular Glue research and development.