EGLN2 (Vector Vector will be determined during the manufacturing process, either pENTR223.1 or pUC,

EGLN2 (Vector Vector will be determined during the manufacturing process, either pENTR223.1 or pUC,
Item number Size Datasheet Manual SDS Delivery time Quantity Price
CSB-CL856968HU.10 10 µg - - -

10 - 14 business days*

176.00€
 
Length: 378 Sequence: atggtggcgt gttacccagg caacgggctc gggtacgtaa ggcacgttga caatccccac... more
Product information "EGLN2 (Vector Vector will be determined during the manufacturing process, either pENTR223.1 or pUC,"
Length: 378 Sequence: atggtggcgt gttacccagg caacgggctc gggtacgtaa ggcacgttga caatccccac ggcgatgggc gctgcatcac ctgtatctat tacctgaatc agaactggga cgttaaggtg catggcggcc tgctgcagat cttccctgag ggccggcccg tggtagccaa catcgagcca ctctttgacc ggttgctcat tttctggtct gaccggcgga acccccacga ggtgaagcca gcctatgcca ccaggtacgc catcactgtc tggtattttg atgccaagga gcgggcagca gccaaagaca agtatcagct agcatcagga cagaaaggtg tccaagtacc tgtatcacag ccgcctacgc Protein function: Prolyl hydroxylase that mediates hydroxylation of proline residues in target proteins, such as ATF4, IKBKB, CEP192 and HIF1A (PubMed:11595184, PubMed:12039559, PubMed:15925519, PubMed:16509823, PubMed:17114296, PubMed:23932902). Target proteins are preferentially recognized via a LXXLAP motif (PubMed:11595184, PubMed:12039559, PubMed:15925519). Cellular oxygen sensor that catalyzes, under normoxic conditions, the post-translational formation of 4-hydroxyproline in hypoxia-inducible factor (HIF) alpha proteins (PubMed:11595184, PubMed:12039559, PubMed:12181324, PubMed:15925519, PubMed:19339211). Hydroxylates a specific proline found in each of the oxygen-dependent degradation (ODD) domains (N-terminal, NODD, and C-terminal, CODD) of HIF1A (PubMed:11595184, PubMed:12039559, PubMed:12181324, PubMed:15925519). Also hydroxylates HIF2A (PubMed:11595184, PubMed:12039559, PubMed:15925519). Has a preference for the CODD site for both HIF1A and HIF2A (PubMed:11595184, PubMed:12039559, PubMed:15925519). Hydroxylated HIFs are then targeted for proteasomal degradation via the von Hippel-Lindau ubiquitination complex (PubMed:11595184, PubMed:12039559, PubMed:15925519). 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 (PubMed:11595184, PubMed:12039559, PubMed:15925519). EGLN2 is involved in regulating hypoxia tolerance and apoptosis in cardiac and skeletal muscle (PubMed:11595184, PubMed:12039559, PubMed:15925519). Also regulates susceptibility to normoxic oxidative neuronal death (PubMed:11595184, PubMed:12039559, PubMed:15925519). Links oxygen sensing to cell cycle and primary cilia formation by hydroxylating the critical centrosome component CEP192 which promotes its ubiquitination and subsequent proteasomal degradation (PubMed:23932902). Hydroxylates IKBKB, mediating NF-kappa-B activation in hypoxic conditions (PubMed:17114296). Also mediates hydroxylation of ATF4, leading to decreased protein stability of ATF4. [The UniProt Consortium]
Keywords: PHD1, HPH-1, EIT-6, HPH-3, HIF-PH1, Egl nine homolog 2, Estrogen-induced tag 6, HIF-prolyl hydroxylase 1, Prolyl hydroxylase EGLN2, Hypoxia-inducible factor prolyl hydroxylase 1, Prolyl hydroxylase domain-containing protein 1
Supplier: Cusabio
Supplier-Nr: CL856968HU

Properties

Application: Molecular biology, clone
Species reactivity: human

Handling & Safety

Storage: +4°C
Shipping: +4°C (International: +4°C)
Caution
Our products are for laboratory research use only: Not for administration to humans!
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