18 Results for "

TPD.

" in MedChemExpress (MCE) Product Catalog:
Products (18)

18 Results for "TPD." in MCE Product Catalog:

Cat. No.: HY-149934
CAS No.: 3053860-67-3
Purity:  98.77%
Target:  

Ligands for E3 Ligase

Research Areas:  

Cancer

DCAF1 binder 1 is a selective for the CRL4 DCAF1 E3 ligase complex. DCAF1 binder 1 is a ligands for E3 Ligase, involving in targeted protein degradation (TPD) .
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Cat. No.: HY-P11090
CAS No.: 1273551-45-3
Target:  

MHC

Research Areas:  

Inflammation/Immunology

TpD is a chimeric T-helper epitope. TpD has a special site that cathepsin can cut. Immunization with TpD produces a strong antibody response. TpD promotes long-term CD4 immune responses in animals and humans. TpD binds well to many human MHC class II types, mainly HLA-DRB1. It also binds some other HLA alleles like DRB3, DRB4, DRB5, DP, and DQ. TpD can be used to improve the immune response of peptide vaccines .
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Cat. No.: HY-168863
Target:  

PROTACs HDAC Apoptosis

Research Areas:  

Cancer

FF2049 is a selective HDAC PROTAC degrader (DC50 = 257 nM for HDAC1). FF2049 promotes ubiquitination and degradation of HDAC. FF2049 promotes Apoptosis. FF2049 can be used for the research of hematological and solid cancer .
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Cat. No.: HY-168864
Research Areas:  

Cancer

HDAC ligand-5 is a template for the non-selective HDAC inhibitor Vorinostat (HY-10221). HDAC ligand-5 can serve as a ligand for target protein (Ligands for Target Protein for PROTAC) for the development of PROTAC HDAC degraders with antitumor activity. HDAC ligand-5 can be used for the synthesis of FF2049 (HY-168863) .
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Cat. No.: HY-RS14929
Research Areas:  

Others

TPD52L1 Human Pre-designed siRNA Set A contains three designed siRNAs for TPD52L1 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.

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Cat. No.: HY-RS14930
Research Areas:  

Others

TPD52L2 Human Pre-designed siRNA Set A contains three designed siRNAs for TPD52L2 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.

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Cat. No.: HY-RS14928
Research Areas:  

Others

TPD52 Human Pre-designed siRNA Set A contains three designed siRNAs for TPD52 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.

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Cat. No.: HY-RS21792
Research Areas:  

Others

Tpd52 Mouse Pre-designed siRNA Set A contains three designed siRNAs for Tpd52 gene (Mouse), as well as a negative control, a positive control, and a FAM-labeled negative control.

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Cat. No.: HY-RS28308
Research Areas:  

Others

Tpd52 Rat Pre-designed siRNA Set A contains three designed siRNAs for Tpd52 gene (Rat), as well as a negative control, a positive control, and a FAM-labeled negative control.
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Cat. No.: HY-P89748
Synonyms: Tumor protein D52, Protein N8, TPD52

Host:  

Mouse

Application:  

WB, ICC/IF, IF-Tissue, IP, ELISA

Reactivity:  

human

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Cat. No.: HY-P811181
Synonyms: Tumor protein D54, hD54, Tumor protein D52-like 2, TPD52L2

Host:  

Rabbit

Application:  

WB, IHC-P

Reactivity:  

Human, Mouse, Rat

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Cat. No.: HY-P89964
Synonyms: TPD52L1, TPD53, Tumor protein D52-like 1

Host:  

Mouse

Application:  

WB, ICC/IF, IF-Tissue, IHC-P

Reactivity:  

human

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Cat. No.: HY-P88872
Synonyms: hD55; NYDSP25

Host:  

Mouse

Application:  

IHC-P, FC

Reactivity:  

Human

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Cat. No.: HY-P88872A
Synonyms: hD55; NYDSP25

Host:  

Mouse

Application:  

IHC-P, FC

Reactivity:  

Human

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Cat. No.: HY-L151
517 compounds

PROTACs (Proteolysis-targeting chimeras) is a class of molecules that utilize ubiquitin-proteasome system (UPS) to ubiquitinate and degrade target proteins. The PROTACs molecule consists of two ligands joined by a linker. The one-to-one interaction between PROTACs and target proteins determines the high efficiency of PROTACs, making it a potential molecule for targeted protein degradation (TPD) therapy.

MCE supplies a unique collection of 517 PROTACs that effectively degrade target proteins with more powerful screening capability. MCE PROTAC Library is a useful tool for signal pathway research, protein degradation therapy research, drug discovery and drug repurposing, etc.

Cat. No.: HY-L137
111 compounds

Targeted protein degradation(TPD) is a novel and promising approach to new drug discovery and development. It shows great potential for treating diseases with “undruggable” pathogenic protein targets and for overcoming drug resistance. Molecular glues and PROTACs are both targeted protein degraders that have attracted the most attention.

Molecular glues are small molecular degraders that mainly induce novel interaction between an E3 ligase and a target protein to form a ternary complex, leading to protein ubiquitination and subsequent proteasome degradation. Compared with PROTACs, molecular glues generally possess more favorable drug-like properties, such as lower MW, higher cell permeability, and better oral absorption. Molecular glues are emerging as a promising new therapeutic strategy.

MCE supplies a unique collection of 111 molecular glues which target various proteins. MCE Molecular Glue Compound Library is a useful tool to conduct scientific research and disease mechanism study.

Cat. No.: HY-P702895
Purity:  ≥ 80%, as determined by reducing SDS-PAGE.
Synonyms: protein phosphatase 2A catalytic subunit α; TPD3; RP-C; PP2Ac,PPP2CA; protein phosphatase 2A regulatory subunit; PP2AR
Species:  
Source:  
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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.

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