11 Results for "

prolyl-hydroxylase domain

" in MedChemExpress (MCE) Product Catalog:
Products (11)

11 Results for "prolyl-hydroxylase domain" in MCE Product Catalog:

2
2 Cited Publications
Cat. No.: HY-139287
CAS No.: 823830-85-9
Purity:  99.69%
Research Areas:  

Cancer

M1002 is a hypoxia-inducible factor-2 (HIF-2) agonist, and can enhance the expression of HIF-2 target genes. M1002 shows synergy with prolyl-hydroxylase domain (PHD) inhibitors .
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2
2 Cited Publications
Cat. No.: HY-113649
CAS No.: 1007377-55-0
Purity:  99.95%
Research Areas:  

Cancer

AKB-6899, a prolyl hydroxylase domain 3 (PHD3) inhibitor, is a selective HIF-2α stabilizer. AKB-6899 also increases soluble form of the VEGF receptor (sVEGFR-1) production from GM-CSF-treated macrophages, and has antitumor and antiangiogenic effects .
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1
1 Cited Publications
Cat. No.: HY-12315
CAS No.: 5262-39-5
Purity:  99.28%
Synonyms: N-Oxaloglycine
Research Areas:  

Cancer

N-Oxalylglycine (N-Oxaloglycine) is a Jumonji C-domain-containing histone lysine demethylase inhibitor. N-Oxalylglycine inhibits JMJD2A, JMJD2C and JMJD2D. N-Oxalylglycine also inhibits HIF prolylhydroxylase domain-1 (PHD-1) and PHD-2, with an IC50 of 2.1 μM and 5.6 μM, respectively .
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Cat. No.: HY-136300
CAS No.: 2009343-14-8
Purity:  99.21%
PHD-1-IN-1 is an orally active and potent HIF prolylhydroxylase domain-1 (PHD-1) inhibitor with an IC50 of 0.034 μM. PHD-1-IN-1 has a unique monodentate binding interaction with the active site Fe 2+ ion and induces the formation of an "Arg367-out" pocket .
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Cat. No.: HY-131346
CAS No.: 1567657-46-8
Purity:  99.37%
Research Areas:  

Cardiovascular Disease

HIF-PHD-IN-1 is an orally active inhibitor of hypoxia-inducible factor prolyl hydroxylase domain (HIF-PHD), with an IC50 of 54 nM for hHIF-PHD2. HIF-PHD-IN-1 is promising therapeutic agents for renal anemia .
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Cat. No.: HY-170914
CAS No.: 1258877-17-6
Research Areas:  

Metabolic Disease

JPHM-2-167 (Compound 11) is a selective PHD (prolyl hydroxylase domain enzyme) inhibitor. JPHM-2-167 inhibits PHD2, PHD3 with IC50s of 0.253 μM and 3.95 μM, respectively. JPHM-2-167 can be used for chronic kidney disease .
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Cat. No.: HY-12315R
CAS No.: 5262-39-5
Synonyms: N-Oxaloglycine (Standard)
N-Oxalylglycine (Standard) is the analytical standard of N-Oxalylglycine. This product is intended for research and analytical applications. N-Oxalylglycine (N-Oxaloglycine) is a Jumonji C-domain-containing histone lysine demethylase inhibitor. N-Oxalylglycine inhibits JMJD2A, JMJD2C and JMJD2D. N-Oxalylglycine also inhibits HIF prolylhydroxylase domain-1 (PHD-1) and PHD-2, with an IC50 of 2.1 μM and 5.6 μM, respectively .
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Cat. No.: HY-114726
CAS No.: 170689-51-7
HIF-PHD-IN-5 is a hypoxia-inducible factor prolyl hydroxylase domain (HIF-PHD) inhibitor. HIF-PHD-IN-5 can be used for the research of neurological disease .
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Cat. No.: HY-P87578
Synonyms: DKFZp434E026 antibody; Egl nine homolog 2 antibody; EGLN 2 antibody; EIT 6 antibody; Estrogen-induced tag 6 antibody; HIF P4H 1 antibody; HIF prolyl hydroxylase 1 antibody; HIF-PH1 antibody; HIF-prolyl hydroxylase 1 antibody; HIFPH 1 antibody; HPH-3 antibody; HPH3 antibody; Hypoxia-inducible factor prolyl hydroxylase 1 antibody; P4H1 antibody; PHD 1 antibody; prolyl hydroxylase domain containing protein 1 antibody

Host:  

Rabbit

Application:  

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

Reactivity:  

Human, Mouse, Rat

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Cat. No.: HY-153510
CAS No.: 2009344-53-8
PHD-1-IN-2 is an orally active inhibitor of hypoxia-inducible factor prolyl hydroxylase domain 1 (PHD-1) with an IC50 of 0.07 μM. PHD-1-IN-2 acts as a substrate of MDR1 in MDR1-MDCK cell monolayer assays. PHD-1-IN-2 can be used in the research of ischemia, inflammatory responses and neurodegenerative diseases, such as inflammatory bowel disease and ischemia-reperfusion injury .
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Cat. No.: HY-L045
4,317 compounds

Oxygen homeostasis regulation is the most fundamental cellular process for adjusting physiological oxygen variations, and its irregularity leads to various human diseases, including cancer. Hypoxia is closely associated with cancer development, and hypoxia/oxygen-sensing signaling plays critical roles in the modulation of cancer progression.

Hypoxia-inducible factor 1 (HIF-1) is a transcription factor that functions as a master regulator of oxygen homeostasis. A variety of HF-1 target genes have been identified thus far which encode proteins that play key roles in critical developmental and physiological processes including angiogenesis/vascular remodeling, erythropoiesis, glucose transport, glycolysis, iron transport, and cell proliferation/survival.

HIF-1 is a heterodimeric transcription factor consisting of a constitutively expressed β-subunit and an oxygen-regulated α-subunit. The unique feature of HIF-1 is the regulation of HIF-1α expression and activity based upon the cellular O2 concentration. Under normoxic conditions, hydroxylation of HIF-1α on these different proline residues is essential for HIF proteolytic degradation by promoting interaction with the von Hippel-Lindau tumor-suppressor protein (pVHL) through hydrogen bonding to the hydroxyproline-binding pocket in the pVHL β-domain. As oxygen levels decrease, hydroxylation of HIF decreases; HIF-1α then no longer binds pVHL, and becomes stabilized, allowing more of the protein to translocate to the cell’s nucleus, where it acts as a transcription factor, upregulating (often within minutes) the production of proteins that stimulate blood perfusion in tissues and thus tissue oxygenation.

MCE offers a unique collection of 4,317 oxygen sensing related compounds targeting HIF/HIF Prolyl-Hydroxylase, MAPK/ERK, PI3K/AKT signaling pathways, etc. MCE Oxygen Sensing Compound Library is a useful tool to study hypoxia, oxidative stress and discover new anti-cancer drugs.

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