6 Results for "

Chromatin Accessibility

" in MedChemExpress (MCE) Product Catalog:
Products (6)

6 Results for "Chromatin Accessibility" in MCE Product Catalog:

6
6 Cited Publications
Cat. No.: HY-147214
CAS No.: 2648450-42-2
Purity:  99.54%
Target:  

YAP

Research Areas:  

Cancer

GNE-7883 is a pan-TEAD inhibitor that blocks the association of YAP/TAZ with TEAD. GNE-7883 effectively reduces chromatin accessibility at TEAD motifs, inhibits cell proliferation in multiple cell line models, and achieves strong anti-tumor efficacy in vivo. In addition, GNE-7883 effectively overcomes intrinsic and acquired resistance to KRAS (Kirsten rat sarcoma viral oncogene homolog) G12C inhibitors in multiple preclinical models by inhibiting YAP/TAZ activation .
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2
2 Cited Publications
Cat. No.: HY-163410
CAS No.: 3084244-26-5
Research Areas:  

Cancer

AU-24118 is an orally active PROTAC degrader that recruits cereblon to target the degradation of SMARCA2, SMARCA4 and PBRM1. AU-24118 impairs the chromatin accessibility of oncogenic transcription factors, inhibits colony formation, dislodges chromatin-bound transcription factors, attenuates downstream signal transduction, induces apoptosis, and exerts antiproliferative and cytotoxic effects. AU-24118 can be used in research related to castration-resistant prostate cancer, colorectal cancer, small cell lung cancer and multiple myeloma (including the t (4;14) subtype) .
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Cat. No.: HY-159607
CAS No.: 2755761-78-3
Target:  

PROTACs SWI/SNF Complex

Research Areas:  

Cancer

PRT3789 is a selective SMARCA2 PROTAC degrader (DC50 in HeLa cell: 0.72 nM for SMARCA2, 14 nM for SMARCA4). PRT3789 forms a stable ternary complex with Von Hippel-Lindau (VHL) E3 ligase, induces polyubiquitination at SMARCA2-specific lysine residues, and drives proteasome-dependent SMARCA2 degradation. PRT3789 disrupts SWI/SNF chromatin remodeling complex integrity, induces dissociation of specific subunits, suppresses oncogenic gene expression, reduces chromatin accessibility, and upregulates antigen processing/presentation-related gene expression. PRT3789 induces synthetic lethality, inhibits proliferation and colony formation, and drives tumor growth inhibition and regression in SMARCA4-deficient contexts. PRT3789 can be used for the research of SMARCA4-mutated solid tumors, non-small cell lung cancer, endometrial cancer, colorectal cancer, bladder cancer, esophageal cancer, ovarian cancer, and gastric cancer .
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Cat. No.: HY-153361
CAS No.: 2951015-29-3
Purity:  98.80%
Target:  

PROTACs SWI/SNF Complex

Research Areas:  

Inflammation/Immunology Cancer

YD23 is a selective SMARCA2 PROTAC degrader with DC50 values of 64 nM and 297 nM in H1792 cells and H1975 cells. YD23 induces degradation of SMARCA2, which is synthetic lethal to SMARCA4. YD23 reduces chromatin accessibility only in SMARCA4 deficient cells, including cell cycle and cell growth regulatory genes. YD23 selectively inhibits growth of SMARCA4 mutant lung cancer cells. YD23 has potent tumor growth inhibitory activity in SMARCA4-mutant xenografts. YD23 can be used for the study of non-small cell lung cancer (NSCLC) .
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Cat. No.: HY-141551
CAS No.: 2369048-69-9
Purity:  98.00%
Target:  

Estrogen Receptor/ERR

Research Areas:  

Cancer

GNE-274 is a structural analog of the ER degrader GDC-0927 and is a non-degrader. GNE-274 does not induce conversion of ER in breast cancer cell lines and functions as a partial ER agonist (partial ER agonist). GNE-274 increases the chromatin accessibility of ER-DNA binding sites, whereas GDC-0927 does not. GNE-274 is an effective ER ligand binding domain (LBD) inhibitor. GNE-274 can be used in cancer research.
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Cat. No.: HY-181421
CAS No.: 2929223-36-7
Target:  

SF3B1

Research Areas:  

Cancer

WX-02-43 is a weak covalent inhibitor of SF3B1, and is the (1S,3R) enantiomer of WX-02-23 (HY-168534). WX-02-43 cannot effectively covalently modify the C258 site in the DNA-binding domain of FOXA1, and its inhibitory activity against SF3B1 is also weaker than that of WX-02-23. WX-02-43 serves as a negative control probe that fails to remodel the chromatin binding pattern and transcriptional activity of FOXA1. WX-02-43 can be used in studies on cancers such as prostate cancer to verify the specific effects of WX-02-23 on FOXA1 and SF3B1 targets .
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