34 Results for "

ATF6

" in MedChemExpress (MCE) Product Catalog:
Products (34)

34 Results for "ATF6" in MCE Product Catalog:

  • Targets Recommended:
Cat. No.: HY-113027R
CAS No.: 1198-84-1
Melatonin (Standard) is the analytical standard of Melatonin. This product is intended for research and analytical applications. Melatonin is a hormone made by the pineal gland that can activates melatonin receptor. Melatonin plays a role in sleep and possesses important antioxidative and anti-inflammatory properties . Melatonin is a novel selective ATF-6 inhibitor and induces human hepatoma cell apoptosis through COX-2 downregulation . Melatonin attenuates palmitic acid-induced (HY-N0830) mouse granulosa cells apoptosis via endoplasmic reticulum stress .
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Cat. No.: HY-123581R
CAS No.: 81810-66-4
Quinocetone (Standard) is the analytical standard of Quinocetone (HY-123581). This product is used for research and analytical purposes. Quinocetone is an orally active animal feed additive used to increase the meat production of livestock and poultry. Quinocetone exhibits antibacterial activity against a variety of pathogenic microorganisms. Quinocetone exhibits tissue-specific (liver, lymphocyte) toxicity. Quinocetone induces autophagy in cells through the ATF6/DAPK1 pathway. Quinocetone activates the NF-κB and iNOS pathways, leading to cell apoptosis, hepatocyte vacuolar degeneration and fibrosis. Quinocetone can inhibit Nrf2/HO-1 and induce the generation of reactive oxygen species (ROS), leading to oxidative stress and DNA damage.
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Cat. No.: HY-158104
Target:  

ATF6

Research Areas:  

Others

LPPM-8 is a ligand of Med25 and an inhibitor of Med25 protein-protein interactions (PPIs). LPPM-8 engages Med25 through interaction with the H2 face of its Activator Interaction Domain and stabilizes full-length protein in the cellular proteome. LPPM-8 is an orthosteric inhibitor of H2-binding transcriptional activators (such as ATF6a). LPPM-8 can be used for studying Med25 and Mediator complex biology .
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Cat. No.: HY-123647
CAS No.: 53126-64-0
Satratoxin H is a toxic metabolite of Stachybotrys atra. Satratoxin H induces caspase-3 and PARP cleavage via p38 MAPK and JNK pathways, stimulates JNK, ERK, and p38 MAPK phosphorylation, and activates JNK and p38 MAPK in a glutathione-sensitive manner. Satratoxin H induces DNA double-stranded breaks, apoptotic body formation, intracellular reactive oxygen species generation, and endoplasmic reticulum stress via ATF6, PERK, and IRE1 pathways. Satratoxin H can be used for the research of central nervous system disorders and melanoma .
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Cat. No.: HY-RS01135
Research Areas:  

Others

ATF6B Human Pre-designed siRNA Set A contains three designed siRNAs for ATF6B gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control.

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Cat. No.: HY-P86626
Synonyms: Cyclic AMP-dependent transcription factor ATF-6 alpha, cAMP-dependent transcription factor ATF-6 alpha, Activating transcription factor 6 alpha, ATF6-alpha, ATF6

Host:  

Rabbit

Application:  

WB, ICC/IF, IP, ELISA

Reactivity:  

Human, Mouse, Rat

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Cat. No.: HY-17504C
CAS No.: 1094100-06-7
(3R,5R)-Rosuvastatin is a hERG potassium channel blocker and HMG-CoA reductase inhibitor that prolongs the action potential duration and QT interval by accelerating channel inactivation, impairing channel folding, reducing hERG mRNA transcription, and promoting the degradation of mature and immature hERG channels. (3R,5R)-Rosuvastatin can be used for research on long QT syndrome .
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Cat. No.: HY-P80554
Synonyms: activating transcription factor 6; ATF6A

Host:  

Rabbit

Application:  

WB, IHC-P, IP

Reactivity:  

Human

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Cat. No.: HY-L054
379 compounds

Endoplasmic reticulum (ER) contributes to the production and folding of approximately one third of cellular proteins, and is thus inextricably linked to the maintenance of cellular homeostasis and the fine balance between health and disease. However, some adverse factors negatively impact ER functions and protein synthesis, resulting in the activation of Endoplasmic reticulum stress (ER stress, ERS) and unfolded protein response (UPR) signaling pathways. The UPR is triggered when ER protein folding capacity is overwhelmed by cellular demand and the UPR initially aims to restore ER homeostasis and normal cellular functions. However, if this fails, then the UPR triggers cell death. Chronic ER stress and defects in UPR signaling are emerging as key contributors to a growing list of human diseases, including diabetes, neurodegeneration and cancer.

MCE Endoplasmic Reticulum Stress Compound Library contains 379 ER stress-related compounds that mainly target PERK, IRE1, ATF6, etc. MCE ER stress library is a useful tool for researching ER stress and related diseases.

Cat. No.: HY-P80554A
Synonyms: activating transcription factor 6; ATF6A

Host:  

Rabbit

Application:  

WB, IHC-P, IP

Reactivity:  

Human

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Cat. No.: HY-134800
CAS No.: 692744-81-3
Target:  

ATF6 IRE1 PERK

Research Areas:  

Infection

IBT21 is an endoplasmic reticulum stress inhibitor that binds to unfolded or misfolded proteins and prevents their aggregation. IBT21 inhibits UPR activation of the ATF6, IRE1 and PERK branches under ER stress, with IC50 values of 0.24 μM, 0.33 μM, and 0.46 μM, respectively. IBT21 protects cells from ER stress-induced death and mutant prion protein (protein toxin)-induced growth inhibition. IBT21 exhibits chemical chaperone activity distinct from UPR modulators, does not affect protein translation, moderately reduces DTT (HY-15917)-induced ER stress, and fails to inhibit the heat shock response. IBT21 is useful for research related to prion diseases .
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Cat. No.: HY-L090
2,569 compounds

Transcription is the essential first step in the conversion of the genetic information in the DNA into protein and the major point at which gene expression is controlled. Transcription of protein-coding genes is accomplished by the multi-subunit enzyme RNA polymerase II and an ensemble of ancillary proteins, called transcription factors (TFs). Transcription factors play an important role in the long-term regulation of cell growth, differentiation and responses to environmental cues. Deregulated transcription factors contribute to the pathogenesis of a plethora of human diseases, ranging from diabetes, inflammatory disorders and cardiovascular disease to many cancers, and thus these proteins hold great therapeutic potential.

MCE offers a unique collection of 2,569 compounds with validated transcription factor targets modulating properties. MCE transcription factor-targeted compound library is an effective tool for researching transcription factors as drug targets as well as modulation of TFs for different therapeutic applications.

Cat. No.: HY-123996
CAS No.: 20041-64-9
3-Ethoxy-5,6-dibromosalicylaldehyde is an IRE1/ERN1 inhibitor, with an IC50 of 0.12 μM, a Ki of 71-88 nM, and a Kd of 100 nM against the ribonuclease activity of hIRE1α, as well as an IC50 of 4.8 μM against yeast Ire1. It shows selectivity toward IRE1 ribonuclease. 3-Ethoxy-5,6-dibromosalicylaldehyde blocks the IRE1/ERN1-mediated unfolded protein response (UPR) signaling pathway, including XBP-1 mRNA splicing, induction of XBP1 target genes, and activation of MAPK8/9/10, but does not alter the phosphorylation level of IRE1α or the PERK/ATF6 pathway. 3-Ethoxy-5,6-dibromosalicylaldehyde inhibits chikungunya virus replication, induces growth arrest, apoptosis and clonogenic inhibition in pancreatic cancer cells, reduces FB1 (Fumonisin B1) (HY-N6719)-induced autophagy and cell death, regulates PGG-induced senescence and apoptosis, and alleviates Sorafenib (HY-10201)-induced vacuolization and damage in hepatic stellate cells. 3-Ethoxy-5,6-dibromosalicylaldehyde can be used in research related to chikungunya virus infection, pancreatic cancer, FB1-induced nephrotoxicity, liver cancer, breast cancer, lung cancer and liver fibrosis [6] .
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Cat. No.: HY-108434R
CAS No.: 2323027-38-7
Ceapin-A7 (Standard) is the analytical standard of Ceapin-A7 (HY-108434). This product is intended for research and analytical applications. Ceapin-A7 is a selective blocker of ATF6α signaling in response to ER stress, with an IC50 of 0.59 μM. Ceapin-A7 can be used to explore both the mechanism of activation of ATF6α and its role in pathological settings .
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