PHD3 Rabbit pAb

-YN6103

Catalog: YN6103
Size
Price
Status
Qty.
200μL
$450.00
In stock

0

100μL
$280.00
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40μL
$160.00
In stock

0

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Main Information
Target

EGLN3

Host Species

Rabbit

Reactivity

Human, Mouse, Rat

Applications

WB

MW

26kD (Calculated)

Conjugate/Modification


Unmodified

Detailed Information
Recommended Dilution Ratio
WB 1:500-2000
Formulation
Liquid in PBS containing 50% glycerol, 0.5% BSA and 0.02% sodium azide.
Specificity
This antibody detects endogenous levels of PHD3 at Human, Mouse,Rat
Purification
The antibody was affinity-purified from rabbit antiserum by affinity-chromatography using epitope-specific immunogen.
Storage
-15°C to -25°C/1 year(Do not lower than -25°C)
Concentration
1 mg/ml
MW(Calculated)
26kD
Modification
Unmodified
Clonality
Polyclonal
Isotype
IgG
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Antigen&Target Information
Immunogen:
Synthesized peptide derived from human PHD3
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Specificity:
This antibody detects endogenous levels of PHD3 at Human, Mouse,Rat
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Gene Name:
EGLN3
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Protein Name:
Egl nine homolog 3 (HPH-1) (Hypoxia-inducible factor prolyl hydroxylase 3) (HIF-PH3) (HIF-prolyl hydroxylase 3) (HPH-3) (Prolyl hydroxylase domain-containing protein 3) (PHD3)
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Database Link:
Organism Gene ID SwissProt
Human 112399; Q9H6Z9;
Mouse 112407; Q91UZ4;
Rat 54702; Q62630;
Function:
Prolyl hydroxylase that mediates hydroxylation of proline residues in target proteins, such as PKM, TELO2, ATF4 and HIF1A . Target proteins are preferentially recognized via a LXXLAP motif. Cellular oxygen sensor that catalyzes, under normoxic conditions, the post-translational formation of 4-hydroxyproline in hypoxia-inducible factor (HIF) alpha proteins . Hydroxylates a specific proline found in each of the oxygen-dependent degradation (ODD) domains (N-terminal, NODD, and C-terminal, CODD) of HIF1A . Also hydroxylates HIF2A . Has a preference for the CODD site for both HIF1A and HIF2A . Hydroxylation on the NODD site by EGLN3 appears to require prior hydroxylation on the CODD site . Hydroxylated HIFs are then targeted for proteasomal degradation via the von Hippel-Lindau ubiquitination complex . Under hypoxic conditions, the hydroxylation reaction is attenuated allowing HIFs to escape degradation resulting in their translocation to the nucleus, heterodimerization with HIF1B, and increased expression of hypoxy-inducible genes . ELGN3 is the most important isozyme in limiting physiological activation of HIFs (particularly HIF2A) in hypoxia. Also hydroxylates PKM in hypoxia, limiting glycolysis . Under normoxia, hydroxylates and regulates the stability of ADRB2 . Regulator of cardiomyocyte and neuronal apoptosis. In cardiomyocytes, inhibits the anti-apoptotic effect of BCL2 by disrupting the BAX-BCL2 complex . In neurons, has a NGF-induced proapoptotic effect, probably through regulating CASP3 activity . Also essential for hypoxic regulation of neutrophilic inflammation . Plays a crucial role in DNA damage response (DDR) by hydroxylating TELO2, promoting its interaction with ATR which is required for activation of the ATR/CHK1/p53 pathway . Also mediates hydroxylation of ATF4, leading to decreased protein stability of ATF4 (Probable).
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Cellular Localization:
Nucleus . Cytoplasm . Colocalizes with WDR83 in the cytoplasm. .
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Catalog: YN6103
Size
Price
Status
Qty.
200μL
$450.00
In stock

0

100μL
$280.00
In stock

0

40μL
$160.00
In stock

0

Add to cart

Collected

Collect

Customized Service

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