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Home >Products> Reagents >Antibody> HIF-1伪 Recombinant Rabbit mAb (S-1857-45)
HIF-1伪 Recombinant Rabbit mAb (S-1857-45)
HIF-1伪 Recombinant Rabbit mAb (S-1857-45)
Origin of place Singapore
Model S0B1476-25μl
Supplier ANT BIO PTE.LTD.
Price 100
Hits 10
Updated 9/1/2025
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Product Specification


HostRabbit
AntigenHIF-1伪
SynonymsHypoxia-inducible factor 1-alpha; HIF-1-alpha; HIF1-alpha; ARNT-interacting protein; Basic-helix-loop-helix-PAS protein MOP1; Class E basic helix-loop-helix protein 78 (bHLHe78); Member of PAS protein 1; PAS domain-containing protein 8; BHLHE78; MOP1; PASD8; HIF1A; HIF-1alpha
ImmunogenRecombinant Protein
LocationCytoplasm, Nucleus
AccessionQ16665
Clone NumberS-1857-45
Antibody TypeRecombinant mAb
IsotypeIgG
ApplicationWB
ReactivityHu
PurificationProtein A
Concentration0.5 mg/ml
ConjugationUnconjugated
Physical AppearanceLiquid
Storage Buffer

PBS, 40% Glycerol, 0.05% BSA, 0.03% Proclin 300

Stability & Storage

12 months from date of receipt / reconstitution, -20 掳C as supplied

Dilution


applicationdilutionspecies
WB1:1000Hu

Background

HIF-1伪 (hypoxia-inducible factor-1 alpha) is a crucial transcriptional regulator encoded by the HIF1A gene, playing a vital role in cellular adaptation to low-oxygen conditions. Under normal oxygen levels, HIF-1伪 has a short half-life and is rapidly degraded via the von Hippel-Lindau tumor suppressor gene product (pVHL)-mediated ubiquitin-proteasome pathway. However, in hypoxic conditions (when oxygen levels are below 5%), HIF-1伪 becomes stable, accumulates, and translocates to the nucleus. There, it forms an active HIF-1 complex by binding with HIF-1尾, which then binds to hypoxia response elements (HRE) in the promoters of target genes, activating the transcription of over 40 genes involved in processes such as oxygen transport, glucose metabolism, cell survival, and angiogenesis. HIF-1伪 is highly expressed in many tissues, especially in the kidneys and heart, and is often overexpressed in various cancers, contributing to tumor growth and resistance to therapies. Its stability and activity are regulated by various post-translational modifications, including hydroxylation, acetylation, and phosphorylation.

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