Human ALOX15 Matched Antibody Pair Set [ABP-Q-0319] (CAT#: ABP-Q-0319)

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Human ALOX15 Matched Antibody Pair set for ELISA useCapture Antibody: Mouse monoclonal anti-ALOX15Detection Antibody: Rabbit purified polyclonal anti-ALOX15

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Antigen Detail

TargetALOX15
DescriptionALOX15 is, like other lipoxygenases, a seminal enzyme in the metabolism of polyunsaturated fatty acids to a wide range of physiologically and pathologically important products.
Species ReactivityHuman

Capture Antibody

Capture ClonalityMonoclonal
Host SpeciesMouse
CloneIV01499
PurificationAffinity chromatography
BufferPBS, pH 7.4, containing 0.1% Proclin 300
ApplicationELISA

Detection Antibody

Det-ClonalityPolyclonal
Host SpeciesRabbit
ConjugationUnconjugated
PurificationAffinity chromatography
BufferPBS, pH 7.4

General Product Property

Product OverviewHuman ALOX15 Matched Antibody Pair set for ELISA use
Capture Antibody: Mouse monoclonal anti-ALOX15
Detection Antibody: Rabbit purified polyclonal anti-ALOX15
SpecificityValidated for detecting natural and recombinant human ALOX15
Research AreaGrowth Factors; Hormones
ApplicationELISA
Application NotesOptimal dilutions should be determined experimentally by the user.
FormLyophilized
StorageAvoid repeated freeze/thaw cycles. Store at 2-8°C for short term. Aliquot and store at -20°C for long term storage.
Size1 Set
Sample TypeSerum; Supernatant; Urine; Cell lysate; Plasma; Tissue Homogenates
Usage StatementAvailable for Research Use Only. Not for use in therapeutic or diagnostic applications.

Target Overview

Gene SymbolALOX15
Full NameArachidonate 15-Lipoxygenase
BackgroundALOX15 (also termed arachidonate 15-lipoxygenase, 15-lipoxygenase-1, 15-LO-1, 15-LOX-1) is, like other lipoxygenases, a seminal enzyme in the metabolism of polyunsaturated fatty acids to a wide range of physiologically and pathologically important products. ▼ Gene Function

Kelavkar and Badr (1999) stated that the ALOX15 gene product is implicated in antiinflammation, membrane remodeling, and cancer development/metastasis. Kelavkar and Badr (1999) described experiments yielding data that supported the hypothesis that loss of the TP53 gene, or gain-of-function activities resulting from the expression of its mutant forms, regulates ALOX15 promoter activity in human and in mouse, albeit in directionally opposite manners. These studies defined a direct link between ALOX15 gene activity and an established tumor-suppressor gene located in close chromosomal proximity. Kelavkar and Badr (1999) referred to this as evidence that 15-lipoxygenase is a mutator gene. ▼ Mapping

By PCR analysis of a human-hamster somatic hybrid DNA panel, Funk et al. (1992) demonstrated that genes for 12-lipoxygenase and 15-lipoxygenase are located on human chromosome 17, whereas the most unrelated lipoxygenase (5-lipoxygenase) was mapped to chromosome 10.
Alternative NamesALOX15; 12-LOX; 15-LOX-1; 15LOX-1; arachidonate 15-lipoxygenase; 15-LOX; LOG15
Gene ID246 (Human)
Uniprot IDP16050 (Human)
GeneCardsALOX15
HGNC433
EnsemblENSG00000161905
OMIM152392
Involvement in DiseaseDiseases associated with ALOX15 include Asthma, Nasal Polyps, And Aspirin Intolerance and Periventricular Leukomalacia.
FunctionNon-heme iron-containing dioxygenase that catalyzes the stereo-specific peroxidation of free and esterified polyunsaturated fatty acids generating a spectrum of bioactive lipid mediators (PubMed:23242647, PubMed:25293588, PubMed:1944593, PubMed:17052953, PubMed:8334154, PubMed:24282679). Converts arachidonic acid into 12-hydroperoxyeicosatetraenoic acid/12-HPETE and 15-hydroperoxyeicosatetraenoic acid/15-HPETE (PubMed:1944593, PubMed:17052953, PubMed:8334154, PubMed:24282679). Also converts linoleic acid into 13-hydroperoxyoctadecadienoic acid (PubMed:8334154). Converts epoxy fatty acids to hydroperoxy-epoxides derivatives followed by an intramolecular nucleophilic substitution between hydroperoxy and epoxy moieties leading to the formation of monocyclic endoperoxides (PubMed:25293588). May also act on (12S)-hydroperoxyeicosatetraenoic acid/(12S)-HPETE to produce hepoxilin A3 (By similarity). Probably plays an important role in the immune and inflammatory responses. Through the oxygenation of membrane-bound phosphatidylethanolamine in macrophages may favor clearance of apoptotic cells during inflammation by resident macrophages and prevent an autoimmune response associated with the clearance of apoptotic cells by inflammatory monocytes. In parallel, may regulate actin polymerization which is crucial for several biological processes, including macrophage function. May also regulate macrophage function through regulation of the peroxisome proliferator activated receptor signaling pathway (By similarity). Finally, it is also involved in the cellular response to IL13/interleukin-13 (PubMed:21831839). In addition to its role in the immune and inflammatory responses, may play a role in epithelial wound healing in the cornea maybe through production of lipoxin A4. May also play a role in endoplasmic reticulum stress response and the regulation of bone mass.
Related PathwaysNon-heme iron-containing dioxygenase that catalyzes the stereo-specific peroxidation of free and esterified polyunsaturated fatty acids generating a spectrum of bioactive lipid mediators (PubMed:23242647, PubMed:25293588, PubMed:1944593, PubMed:17052953, PubMed:8334154, PubMed:24282679). Converts arachidonic acid into 12-hydroperoxyeicosatetraenoic acid/12-HPETE and 15-hydroperoxyeicosatetraenoic acid/15-HPETE (PubMed:1944593, PubMed:17052953, PubMed:8334154, PubMed:24282679). Also converts linoleic acid into 13-hydroperoxyoctadecadienoic acid (PubMed:8334154). Converts epoxy fatty acids to hydroperoxy-epoxides derivatives followed by an intramolecular nucleophilic substitution between hydroperoxy and epoxy moieties leading to the formation of monocyclic endoperoxides (PubMed:25293588). May also act on (12S)-hydroperoxyeicosatetraenoic acid/(12S)-HPETE to produce hepoxilin A3 (By similarity). Probably plays an important role in the immune and inflammatory responses. Through the oxygenation of membrane-bound phosphatidylethanolamine in macrophages may favor clearance of apoptotic cells during inflammation by resident macrophages and prevent an autoimmune response associated with the clearance of apoptotic cells by inflammatory monocytes. In parallel, may regulate actin polymerization which is crucial for several biological processes, including macrophage function. May also regulate macrophage function through regulation of the peroxisome proliferator activated receptor signaling pathway (By similarity). Finally, it is also involved in the cellular response to IL13/interleukin-13 (PubMed:21831839). In addition to its role in the immune and inflammatory responses, may play a role in epithelial wound healing in the cornea maybe through production of lipoxin A4. May also play a role in endoplasmic reticulum stress response and the regulation of bone mass

For Research Use Only.

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