Clinisciences > Anti-HO-1 Antibody
Anti-HO-1 Antibody
Katalog-Nummer OAED00207
Size : 50ug
Marke : Aviva Systems Biology
Anti-HO-1 Antibody (OAED00207)
| Datasheets/Manuals | Printable datasheet for Anti-HO-1 Antibody (OAED00207) |
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| Predicted Species Reactivity | Dog|Human|Mouse|Rabbit|Rat|Sheep |
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| Product Format | Liquid PBS containing 50% glycerol and 0.09% sodium azide |
| Clonality | Polyclonal |
| Host | Rabbit |
| Application | Flow cytometry|Immunocytochemistry|Western blot |
| Reconstitution and Storage | Store at -20°C. Avoid freeze/thaw cycles. |
| Immunogen | Recombinant rat HO-1 (Hsp32) lacking the membrane spanning region. |
| Purification | Protein A affinity purified |
| Concentration | 1 mg/ml |
| Application Info | WB: 1:1000, ECL |
| Reference | Adaptive HNE-Nrf2-HO-1 pathway against oxidative stress is associated with acute gastric mucosal lesions: T. Ueyama, et al. ; Am. J. Physiol. Gastrointest. Liver Physiol. 295, G460 (2008), Application(s): WB, IHC using rat cell lysates & tissue, Abstract; Induction of Heme Oxygenase-1 and Ferritin in the Kidney in Warm Antibody Hemolytic Anemia: F. Fervenza, et al. ; Am. J. Kidney Dis. 52, 972 (2008), Application(s): IHC using human tissue, Abstract; Induction of Heme Oxygenase-1 Is a Beneficial Response in a Murine Model of Venous Thrombosis: K. Nath, et al. ; Am. J. Pathol. 173, 1882 (2008), Application(s): IHC using mouse tissue, Abstract; Comparison of the heme-free and -bound crystal structures of human heme oxygenase-1: L. Lad, et al.; J. Biol. Chem. 278, 78 (2003), (ref. 6), Abstract; Red blood cells upregulate cytoprotective proteins and the labile iron pool in dividing human T cells despite a reduction in oxidative stress: F.A. Arosa, et al. ; Free Radic. Biol. Med. 35, 1404 (2003), Application(s): Flow using human samples, Abstract; Red blood cells upregulate cytoprotective proteins and the labile iron pool in dividing human T cells despite a reduction in oxidative stress: A.M. Fonseca, et al.; Free Radic. Biol. Med. 35, 1404 (2003), (ref. 7), Abstract; Role of heme oxygenase-1 protein in the neuroprotective effects of cyclopentenone prostaglandin derivatives under oxidative stress: Y. Watanabe, et al. ; Eur. J. Neurosci. 17, 2249 (2003), Application(s): ICC, WB using mouse samples, Abstract; Role of heme oxygenase-1 protein in the neuroprotective effects of cyclopentenone prostaglandin derivatives under oxidative stress: T. Satoh, et al.; Eur. J. Neurosci. 17, 2249 (2003), (ref. 8), Abstract; Glucose deprivation induces heme oxygenase-1 gene expression by a pathway independent of the unfolded protein response: A. Agarwal, et al. ; J. Biol. Chem. 277, 1933 (2002), Application(s): WB using human samples, Abstract; Regulation and localization of HSP70 and HSP25 in the kidney of rats undergoing long-term administration of angiotensin II: N. Ishizaka, et al.; Hypertension 39, 122 (2002), (ref. 4), Abstract; Oxidative stress and induction of heme oxygenase-1 in the kidney in sickle cell disease: R.P. Hebbel, et al. ; Am. J. Pathol. 158, 893 (2001), Application(s): ICC using human & rat samples, Abstract; Induction of heme oxygenase-1 modulates cis-aconitase activity in lens epithelial cells: U.P. Andley, et al. ; Biochem. Biophys. Res. Commun. 270, 324 (2000), Application(s): WB using rabbit samples, Abstract; Induction of heme oxygenase-1 modulates cis-aconitase activity in lens epithelial cells: D.M. Rzymkiewicz, et al.; BBRC 270, 324 (2000), (ref. 9), Abstract; Heme oxygenase: recent advances in understanding its regulation and role: K.K. Elbirt & H.L. Bonkovsky; Proc. Assoc. Am. Physicians 111, 438 (1999), (ref. 1), Abstract; Peroxynitrite induces haem oxygenase-1 in vascular endothelial cells: a link to apoptosis: R. Foresti, et al.; Biochem J. 339 (Pt 3), 729 (1999), (ref. 3), Abstract; Expression pattern of heme oxygenase isoenzymes 1 and 2 in normal and stress-exposed rat liver: M. Bauer, et al. ; Hepatology 27, 829 (1998), Application(s): Flow using rat samples, Abstract; Carbon monoxide formation in the ductus arteriosus in the lamb: implications for the regulation of muscle tone: C. Ackerley, et al. ; Br. J. Pharmacol. 120, 599 (1997), Application(s): IHC using sheep samples, Abstract; Carbon monoxide formation in the ductus arteriosus in the lamb: implications for the regulation of muscle tone: F. Coceani, et al.; Br. J. Pharmacol. 120, 599 (1997), (ref. 10), Abstract; Expression of heme oxygenase-1 (HSP32) in human prostate: normal, hyperplastic, and tumor tissue distribution: M.D. Maines & P.A. Abrahamsson; Urology 47, 727 (1996), (ref. 2), Abstract; Heme oxygenase-1 is associated with the neurofibrillary pathology of Alzheimers disease: M.A. Smith, et al.; Am. J. Pathol. 145, 42 (1994), (ref. 5), Abstract; |
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| Gene Symbol | Hmox1 |
| Gene Full Name | heme oxygenase 1 |
| Alias Symbols | heme oxygenase (decycling) 1;heme oxygenase (decyclizing) 1;heme oxygenase 1;Heox;HEOXG;Hmox;Ho1;Ho-1;hsp32. |
| NCBI Gene Id | 24451 |
| Protein Name | Heme oxygenase 1 |
| Description of Target | Heme oxygenase cleaves the heme ring at the alpha methene bridge to form biliverdin. Biliverdin is subsequently converted to bilirubin by biliverdin reductase. Under physiological conditions, the activity of heme oxygenase is highest in the spleen, where senescent erythrocytes are sequestrated and destroyed. Exhibits cytoprotective effects since excess of free heme sensitizes cells to undergo apoptosis. |
| Uniprot ID | P06762 |
| Molecular Weight | ~32 kDa by WB |
Protein interactions
| Name | # of Products |
|---|---|
| AKT1 | 428 |
| BLVRB | 3 |
| HMOX1 | 20 |
| HMX1 | 3 |
| NOS1 | 71 |
| POR | 24 |
| PSMD2 | 76 |
| UBC | 7030 |
| UFD1L | 89 |
Biological pathways
| Name | # of Products |
|---|---|
| Angiogenesis | 366 |
| Anti-apoptosis | 727 |
| Cell death | 254 |
| Cellular iron ion homeostasis | 150 |
| Cellular response to hypoxia | 99 |
| Endothelial cell proliferation | 10 |
| Erythrocyte homeostasis | 6 |
| Excretion | 41 |
| Heme catabolic process | 17 |
| Heme oxidation | 7 |
| Intracellular protein kinase cascade | 98 |
| Low-density lipoprotein particle clearance | 43 |
| Negative regulation of leukocyte migration | 5 |
| Negative regulation of smooth muscle cell proliferation | 88 |
| Positive regulation of chemokine biosynthetic process | 61 |
| Positive regulation of I-kappaB kinase/NF-kappaB cascade | 414 |
| Positive regulation of smooth muscle cell proliferation | 123 |
| Positive regulation of vasodilation | 48 |
| Protein homooligomerization | 171 |
| Regulation of transcription from RNA polymerase II promoter in response to oxidative stress | 19 |
| Response to hydrogen peroxide | 22 |
| Response to nicotine | 18 |
| Smooth muscle hyperplasia | 9 |
| Transmembrane transport | 204 |
| Wound healing involved in inflammatory response | 4 |
Biological process
| Name | # of Products |
|---|---|
| Angiogenesis | 196 |
| Anti-apoptosis | 239 |
| Cell death | 133 |
| Cellular iron ion homeostasis | 66 |
| Cellular response to hypoxia | 44 |
| Cellular response to nutrient | 5 |
| DNA damage response, signal transduction resulting in induction of apoptosis | 19 |
| Endothelial cell proliferation | 15 |
| Erythrocyte homeostasis | 10 |
| Excretion | 35 |
| Heme catabolic process | 8 |
| Heme oxidation | 2 |
| Intracellular protein kinase cascade | 91 |
| Iron ion homeostasis | 21 |
| Low-density lipoprotein particle clearance | 12 |
| Negative regulation of DNA binding | 25 |
| Negative regulation of leukocyte migration | 6 |
| Negative regulation of mast cell cytokine production | 2 |
| Negative regulation of mast cell degranulation | 3 |
| Negative regulation of neuron apoptosis | 96 |
| Negative regulation of sequence-specific DNA binding transcription factor activity | 73 |
| Negative regulation of smooth muscle cell proliferation | 39 |
| Porphyrin-containing compound metabolic process | 17 |
| Positive regulation of angiogenesis | 97 |
| Positive regulation of anti-apoptosis | 53 |
| Positive regulation of chemokine biosynthetic process | 27 |
| Positive regulation of I-kappaB kinase/NF-kappaB cascade | 160 |
| Positive regulation of smooth muscle cell proliferation | 67 |
| Positive regulation of vasodilation | 16 |
| Protein homooligomerization | 91 |
| Regulation of angiogenesis | 23 |
| Regulation of blood pressure | 59 |
| Regulation of sequence-specific DNA binding transcription factor activity | 79 |
| Regulation of transcription from RNA polymerase II promoter in response to oxidative stress | 8 |
| Response to estrogen stimulus | 71 |
| Response to hydrogen peroxide | 47 |
| Response to nicotine | 28 |
| Response to oxidative stress | 104 |
| Response to stimulus | 164 |
| Signal transduction | 1058 |
| Small GTPase mediated signal transduction | 224 |
| Small molecule metabolic process | 825 |
| Smooth muscle hyperplasia | 2 |
| Transmembrane transport | 500 |
| Wound healing involved in inflammatory response | 4 |
Cellular components
| Name | # of Products |
|---|---|
| Caveola | 62 |
| Cytosol | 1868 |
| Endoplasmic reticulum | 837 |
| Endoplasmic reticulum membrane | 498 |
| Extracellular space | 884 |
| Membrane fraction | 437 |
| Microsome | 250 |
| Nucleolus | 1179 |
| Nucleus | 4914 |
Protein function
| Name | # of Products |
|---|---|
| Enzyme binding | 898 |
| Heme binding | 327 |
| Heme oxygenase (decyclizing) activity | 7 |
| Metal ion binding | 5514 |
| Oxidoreductase activity | 982 |
| Phospholipase D activity | 12 |
| Protein homodimerization activity | 1852 |
| Signal transducer activity | 1270 |
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Anti-HO-1 (HO-1-1) Antibody (OAED00115)Catalog #: OAED00115Clone: HO-1-1Application: Flow cytometry|Immunocytochemistry|Western blot -
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HMOX1 Antibody - N-terminal region (ARP45222_P050)Catalog #: ARP45222_P050Species Tested: Human, MouseApplication: WBFormat: Liquid. Purified antibody supplied in 1x PBS buffer with 0.09% (w/v) sodium azide and 2% sucrose.


