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Hypoxia Up Regulated 1 Proteins (HYOU1)

The protein encoded by HYOU1 belongs to the heat shock protein 70 family. Additionally we are shipping HYOU1 Antibodies (106) and HYOU1 Kits (43) and many more products for this protein.

list all proteins Gene Name GeneID UniProt
HYOU1 12282 Q9JKR6
Rat HYOU1 HYOU1 192235 Q63617
HYOU1 10525 Q9Y4L1
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Top HYOU1 Proteins at antibodies-online.com

Showing 7 out of 9 products:

Catalog No. Origin Source Conjugate Images Quantity Supplier Delivery Price Details
HOST_Human Cells Human His tag 50 μg Log in to see 16 Days
$382.80
Details
HOST_Escherichia coli (E. coli) Mouse His tag „Crystallography Grade“ protein due to multi-step, protein-specific purification process 1 mg Log in to see 39 to 44 Days
$9,248.02
Details
HOST_Escherichia coli (E. coli) Human His tag „Crystallography Grade“ protein due to multi-step, protein-specific purification process 1 mg Log in to see 39 to 44 Days
$9,248.02
Details
HOST_Wheat germ Human GST tag 10 μg Log in to see 9 Days
$405.71
Details
HOST_Escherichia coli (E. coli) Human His tag   100 μg Log in to see 11 to 13 Days
$616.00
Details
HOST_Escherichia coli (E. coli) Human Un-conjugated   5 applications Log in to see 1 to 2 Days
$312.71
Details
HOST_Escherichia coli (E. coli) Human Un-conjugated   100 μg Log in to see 9 to 19 Days
$794.65
Details

HYOU1 Proteins by Origin and Source

Origin Expressed in Conjugate
Mouse (Murine)

Human , ,
,

Top referenced HYOU1 Proteins

  1. Human HYOU1 Protein expressed in Human Cells - ABIN2004234 : Ozawa, Kuwabara, Tamatani, Takatsuji, Tsukamoto, Kaneda, Yanagi, Stern, Eguchi, Tsujimoto, Ogawa, Tohyama: 150-kDa oxygen-regulated protein (ORP150) suppresses hypoxia-induced apoptotic cell death. in The Journal of biological chemistry 1999 (PubMed)

More Proteins for Hypoxia Up Regulated 1 (HYOU1) Interaction Partners

Mouse (Murine) Hypoxia Up Regulated 1 (HYOU1) interaction partners

  1. Here we show that Grp170 can bind directly to a variety of incompletely folded protein substrates in the endoplasmic reticulum, and as expected for a bona fide chaperone, it does not interact with folded secretory proteins.

  2. These results suggest that although ORP150 is protective against bleomycin-induced lung injury, this protein could stimulate bleomycin-induced pulmonary fibrosis by increasing pulmonary levels of TGF-beta1 (show TGFB1 Proteins) and myofibroblasts.

  3. Results reveal a previously unrecognized attribute of Grp170 as a superior DNA-binding chaperone capable of amplifying TLR9 (show TLR9 Proteins) activation on pathogen recognition.

  4. AICAR (show ATIC Proteins) infusion enhanced ORP150 expression, resulting in the marked amelioration of hepatic ER stress and apoptosis

  5. Secreted grp170 can bind to and co-transport out of tumour cells a full length tumour antigen that may play a role in the anti-tumour immune response.

  6. Grp170 displays multiple peptide binding domains; the presence of two strong peptide binding regions in such a large protein may facilitate the interactions and assembly of two substate proteins.

  7. demonstrated that expression of ORP150 in developing brain most likely serves a cytoprotective function in Purkinje cells

  8. The 150-kDa oxygen-regulated protein may be cytoprotective against ischemia/reperfusion injury via reduction of endoplasmic reticulum stress and probably also inhibition of apoptosis.

  9. ORP150 exerts cytoprotective effects in renal tubular epithelia subjected to I/R injury and suggest a key role for ER stress in the renal tubular response to acute renal failure

  10. Systemic expression of ORP150 in Akita mice improves insulin (show INS Proteins) intolerance, whereas the exclusive overexpression of ORP150 in pancreatic beta-cells of Akita mice did not change their glucose tolerance.

Human Hypoxia Up Regulated 1 (HYOU1) interaction partners

  1. Two NEFs, Grp170 and Sil1 (show SIL1 Proteins), trigger toxin release from BiP (show GDF10 Proteins) to enable successful retrotranslocation and clarify the fate of the toxin after it disengages from BiP (show GDF10 Proteins).

  2. Grp170 induces nucleotide exchange of BiP (show GDF10 Proteins) and releases SV40 virus from BiP (show GDF10 Proteins), promoting SV40 ER-to-cytosol transport and infection.

  3. HYOU1 also modulates vIL (show VIL1 Proteins)-6's ability to induce CCL2 (show CCL2 Proteins).

  4. Here we show that Grp170 can bind directly to a variety of incompletely folded protein substrates in the endoplasmic reticulum, and as expected for a bona fide chaperone, it does not interact with folded secretory proteins.

  5. inducible overexpression of ORP150, in ER stress conditions, exerts inhibitory effect on apoptosis and senescence in human breast carcinoma cells but not in normal fibroblasts

  6. Data indicate that Grp170 (Lhs1 ortholog) coprecipitate with alphaENaC (show SCNN1A Proteins).

  7. AICAR (show ATIC Proteins) infusion enhanced ORP150 expression, resulting in the marked amelioration of hepatic ER stress and apoptosis

  8. Report ORP-150 levels in autopsy tissue after hypoxia/ischemia events in term neonates.

  9. ORP150 exerts cytoprotective effects in renal tubular epithelia subjected to I/R injury and suggest a key role for ER stress in the renal tubular response to acute renal failure

  10. Hypoxia results in an enhancement of ORP 150 expression in several tumour cell lines.

HYOU1 Protein Profile

Protein Summary

The protein encoded by this gene belongs to the heat shock protein 70 family. This gene uses alternative transcription start sites. A cis-acting segment found in the 5' UTR is involved in stress-dependent induction, resulting in the accumulation of this protein in the endoplasmic reticulum (ER) under hypoxic conditions. The protein encoded by this gene is thought to play an important role in protein folding and secretion in the ER. Since suppression of the protein is associated with accelerated apoptosis, it is also suggested to have an important cytoprotective role in hypoxia-induced cellular perturbation. This protein has been shown to be up-regulated in tumors, especially in breast tumors, and thus it is associated with tumor invasiveness. This gene also has an alternative translation initiation site, resulting in a protein that lacks the N-terminal signal peptide. This signal peptide-lacking protein, which is only 3 amino acids shorter than the mature protein in the ER, is thought to have a housekeeping function in the cytosol. In rat, this protein localizes to both the ER by a carboxy-terminal peptide sequence and to mitochondria by an amino-terminal targeting signal.

Gene names and symbols associated with Hypoxia Up Regulated 1 Proteins (HYOU1)

  • hypoxia up-regulated 1 (HYOU1)
  • hypoxia up-regulated 1 (hyou1)
  • hypoxia up-regulated 1 (Hyou1)
  • AI415631 protein
  • Cab140 protein
  • CBP-140 protein
  • GRP-170 protein
  • GRP170 protein
  • HSP12A protein
  • HYOU1 protein
  • id:ibd5056 protein
  • ORP-150 protein
  • ORP150 protein
  • wu:fd14c05 protein
  • zgc:56019 protein

Protein level used designations for Hypoxia Up Regulated 1 Proteins (HYOU1)

hypoxia up-regulated 1 , hypoxia up-regulated protein 1 , Hypoxia up-regulated protein 1 , hypoxia up-regulated protein 1-like , 140 kDa Ca(2+)-binding protein , 150-kDa oxygen regulated protein , 170 kDa glucose regulated protein GRP170 , GRP-170 , calcium binding protein 140 , calcium binding protein, 140 kDa , 150 kDa oxygen-regulated protein , ORP-150 , oxygen regulated protein (150kD) , 170 kDa glucose-regulated protein , glucose-regulated protein 170 , glucose regulated protein, 170 kDa , oxygen regulated protein, 150 kDa

GENE ID SPECIES
508773 Bos taurus
707715 Macaca mulatta
779444 Xenopus (Silurana) tropicalis
100071323 Equus caballus
100173469 Pongo abelii
100380749 Salmo salar
100414434 Callithrix jacchus
100464536 Ailuropoda melanoleuca
12282 Mus musculus
192235 Rattus norvegicus
10525 Homo sapiens
100721624 Cavia porcellus
282295 Bos taurus
100516870 Sus scrofa
428251 Gallus gallus
479410 Canis lupus familiaris
101105848 Ovis aries
398531 Xenopus laevis
327133 Danio rerio
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