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MO25046100 ul$325.00Buy Now | Add to Cart
 
Type: Mouse IgG
 
Applications: IHC; WB
ICC=Immunocytochemistry; IF=Immunofluorescence; IHC=Immunohistochemistry; WB=Western blotting; FC=Flow Cytometry; IP=Immunoprecipitation; E=ELISA; NB=Neutralization of Bioactivity; FACS; FM=Fluorescent Micsroscopy; ; FPLC=Fast Protein Liquid Chromatography; GF=Gravity Flow; HPLC=High Performance Liquid Chromatography; TPE=Targeted Protein Expression; ; ; AC=Adherent Cell Assays; ; ; NAC=Non-adherent Cell Assays; ; ; BSC-CM5= Biacore Sensor Chip CM5; ;
Species Reactivity: H
B=Bovine; Ca=Cat; Ch=Chicken; D=Dog; EQ=Equine; GP=Guinea Pig; H=Human; M=Mouse; P=Porcine; Pr=Primate; R=Rat; Rb=Rabbit; Y=Yeast; Xe=Xenopus; Ze=Zebrafish; ; ; ; NA-Not Applicable; STP=Step-Tactin Proteins
Format: Affinity Purified - liquid
 
Immunogen: A peptide within residues 1-50 of the human protein. [Swiss-Prot# Q9GZT9]. Clone: 366G/76/3
 
Description/Data:
Picture

HIF prolyl hydroxylase 2 is a prolyl hydroxylase that modifies HIF-alpha. Classic prolyl hydroxylases are found in the endoplasmic reticulum and modify collagen, whereas HIF is an intracellular protein and the HPH sites do not resemble those modifying collagen. HIF is a transcriptional complex that plays a critical role in oxygen homeostasis. HPH is an essential component of the pathway through which cells sense oxygen. In the presence of oxygen, HPHs convert specific prolyl residues in HIF-alpha to hydroxyproline, leading to HIF-alpha destruction. Low oxygen levels, sensed at the cellular level, cause the HIF conversion to be reduced so that HIF is stable and there is increased angiogenesis. HPH-2, specifically, catalyzes the posttranslational formation of 4-hydroxyproline in HIF alpha proteins. It hydroxylates HIF-1 alpha at Pro(402) and Pro(564), and HIF-2 alpha. It targets HIF through the hydroxylation for proteasomal degradation via the von Hippel-Lindau ubiquitylation complex.    

Image:  Western blot analysis in HeLa whole cell extracts using HIF Prolyl Hydroxylase 2 Antibody.