24 Results for "

access

" in MedChemExpress (MCE) Product Catalog:
Products (24)

24 Results for "access" in MCE Product Catalog:

Cat. No.: HY-P10466A
KZR-8445 TFA, a cyclic depsipeptide, is a client-selective Sec61 inhibitor. KZR-8445 TFA binds to the fully opened Sec61 lateral gate, blocks lumenal plug domain access, stabilizes lateral gate helices, traps select signal peptides, and disrupts secretory and membrane protein biogenesis. KZR-8445 TFA inhibits pro-inflammatory cytokine secretion in primary immune cells. KZR-8445 TFA inhibits SARS-CoV-2 replication, virus-induced cytotoxicity, and spike protein biogenesis. KZR-8445 TFA blocks disease progression in a mouse model of rheumatoid arthritis. KZR-8445 TFA can be used for the researches of rheumatoid arthritis and SARS-CoV-2 infection .
loading...
    loading...
Cat. No.: HY-P11847
CAS No.: 3124030-35-6
Research Areas:  

Cardiovascular Disease

AT1R-agonist-1 is an angiotensin II type 1 receptor (AT1R) agonist with a Ki value of 1.4 nM. AT1R-agonist-1 exhibits low Gαq activity, retains β-arrestin recruitment function, and accesses the deep allosteric pocket inside AT1R via its flexible side chain. AT1R-agonist-1 possesses positive inotropic effects (enhancing cardiac contractile function) and causes almost no increase in blood pressure. AT1R-agonist-1 can be used for research on conditions such as refractory cardiogenic shock .
loading...
    loading...
Cat. No.: HY-184717
Target:  

Atg4 Autophagy

Research Areas:  

Cancer

Atg4B-IN-3 (compound a25) is a ATG4B inhibitor with a Kd value of 18.01 nM against the human target. Atg4B-IN-3 stably regulates the closed conformation of the loop, prevents substrates from accessing the catalytic site Cys74, and thereby inhibits the proteolytic activity of ATG4B. Atg4B-IN-3 blocks autophagic flux, reduces LC3-II levels, promotes p62 accumulation, disrupts autophagy homeostasis and enhances cell death. Atg4B-IN-3 inhibits cell proliferation, migration and clonogenic survival capacity. Atg4B-IN-3 can be used in studies related to esophageal squamous cell carcinoma .
loading...
    loading...
Cat. No.: HY-L041
468 compounds

Macrocycles, molecules containing 12-membered or larger rings, are receiving increased attention in small-molecule drug discovery. The reasons are several, including providing access to novel chemical space, challenging new protein targets, showing favorable ADME- and PK-properties. Macrocycles have demonstrated repeated success when addressing targets that have proved to be highly challenging for standard small-molecule drug discovery, especially in modulating macromolecular processes such as protein–protein interactions (PPI). Otherwise, the size and complexity of macrocyclic compounds make possible to ensure numerous and spatially distributed binding interactions, thereby increasing both binding affinity and selectivity.

MCE offers a unique collection of 468 macrocyclic compounds which can be used for drug discovery for high throughput screening (HTS) and high content screening (HCS). MCE Macrocyclic Compound Library is a useful tool for discovering new drugs, especially for “undruggable” targets and protein–protein interactions.