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Mouse LOX-1/OLR1 Alexa Fluor 350 Antibody (Clone 214012)

R&D Systems, part of Bio-Techne | Catalog # FAB1564U

R&D Systems, part of Bio-Techne
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FAB1564U-100UG

Key Product Details

Species Reactivity

Mouse

Applications

Flow Cytometry

Label

Alexa Fluor 350 (Excitation = 346 nm, Emission = 442 nm)

Antibody Source

Monoclonal Rat IgG2A Clone # 214012

Product Specifications

Immunogen

Mouse myeloma cell line NS0-derived recombinant mouse LOX-1
Arg60-Ile363
Accession # AAG44998

Specificity

Detects mouse LOX-1 in direct ELISAs and Western blots. In these formats, this antibody does not cross-react with recombinant human LOX-1.

Clonality

Monoclonal

Host

Rat

Isotype

IgG2A

Applications for Mouse LOX-1/OLR1 Alexa Fluor 350 Antibody (Clone 214012)

Application
Recommended Usage

Flow Cytometry

0.25-1 µg/106 cells
Sample: RAW 264.7 mouse monocyte/macrophage cell line

Formulation, Preparation, and Storage

Purification

Protein A or G purified from hybridoma culture supernatant

Formulation

Supplied 0.2 mg/mL in a saline solution containing BSA and Sodium Azide.

Shipping

The product is shipped with polar packs. Upon receipt, store it immediately at the temperature recommended below.

Stability & Storage

Store the unopened product at 2 - 8 °C. Do not use past expiration date.

Background: LOX-1/OLR1

Lectin-like oxidized low-density-lipoprotein receptor-1 (LOX-1), also known as oxidized low-density-lipoprotein receptor-1 (OLR-1), is a type II transmembrane receptor belonging to the C-type lectin family (1). It also belongs to the functionally defined scavenger receptor (SR) superfamily, whose members share the common ability to bind and internalize modified forms of Low Density Lipoproteins (LDL) (2-4). LOX-1 is the first member of the class E scavenger receptor subfamily (SR-E). It binds and supports the internalization of multiple structurally unrelated macromolecules including oxidized LDL, advanced glycation end products (AGE), activated platelets, bacteria, apoptotic or aged cells, and heat shock proteins (5-7). LOX-1 has also been implicated as an intestinal receptor involved in the transcytosis of pancreatic bile salt-dependent lipase (8). The mouse LOX-1 gene encodes a 363 amino acid (aa) residue protein with a short N-terminal intracellular domain, a transmembrane domain, triple repeats of an extracellular stalk/neck region followed by a C-type lectin-like domain (CTLD) (11). The CTLD, which is required for ligand recognition, contains the six conserved cysteine residues present in all C-type lectins, but lacks the Ca2+-binding residues found in classical C-type lectins. LOX-1 can be detected on activated endothelial cells, vascular smooth muscle cells, macrophages, intestinal cells and dendritic cells (6-8). The expression of LOX-1 is induced by pro‑inflammatory or pro‑atherogenic stimuli, as well as by oxidized LDL itself and hemodynamic or oxidative stress. LOX-1 exists on the cell surface as covalent homodimers, which can further associate into non-covalent-linked oligomers (9). Cell surface LOX-1 can also be cleaved by yet unidentified proteases to release the soluble LOX-1 extracellular domain (6). Binding and endocytosis of oxidized LDL by LOX-1 induces oxidative stress, activates NF kappaB, and upregulates the expression of monocyte chemoattractant protein-1 and matrix metalloproteases (5-9). LOX-1-dependent oxidized LDL uptake also induces apoptosis by inducing the expression of the pro‑apoptotic Bax and downregulation of the anti-apoptotic Bcl-2 (10). Oxidized LDL plays a key role in the pathogenesis of atherosclerosis and endothelial dysfunction. Blockade of LOX-1 functions may turn out to be a suitable target for the therapeutic intervention of atherosclerosis.

References

  1. Sawamura, T. et al. (1997) Nature 386:73.
  2. Daugherty, A. (2000) Curr. Opin. Cardiovasc. Pulm. Ren. Invest. Drugs. 2:223.
  3. Platt, N. and S. Gordon (2001) J. Clin. Invest. 108:649.
  4. Platt, N. and S. Gordon (1998) Chem. Biol. 5:R193.
  5. Jono, T. et al. (2002) FEBS Lett. 511:170.
  6. Kume, N. et al. (2001) Curr. Opin. Lipidol. 12:419.
  7. Delneste, Y. et al. (2002) Immunity 17:353.
  8. Bruneau, N. et al. (2003) Mol. Biol. Cell 14:2861.
  9. Xie, Q. et al. (2004) DNA and Cell Biol. 23:111.
  10. Chen, J. et al. (2003) Circ. Res. 94:370.
  11. Hoshikawa, H. et al. (1998) Biochem. Biophys. Res. Comm. 245:841.

Long Name

Lectin-like Oxidized Low-density Lipoprotein Receptor 1

Alternate Names

CLEC8A, LOX1, OLR1, SCARE1, SR-E1

Entrez Gene IDs

4973 (Human); 108078 (Mouse)

Gene Symbol

OLR1

UniProt

Additional LOX-1/OLR1 Products

Product Documents for Mouse LOX-1/OLR1 Alexa Fluor 350 Antibody (Clone 214012)

Certificate of Analysis

To download a Certificate of Analysis, please enter a lot number in the search box below.

Note: Certificate of Analysis not available for kit components.

Product Specific Notices for Mouse LOX-1/OLR1 Alexa Fluor 350 Antibody (Clone 214012)


This product is provided under an agreement between Life Technologies Corporation and R&D Systems, Inc, and the manufacture, use, sale or import of this product is subject to one or more US patents and corresponding non-US equivalents, owned by Life Technologies Corporation and its affiliates. The purchase of this product conveys to the buyer the non-transferable right to use the purchased amount of the product and components of the product only in research conducted by the buyer (whether the buyer is an academic or for-profit entity). The sale of this product is expressly conditioned on the buyer not using the product or its components (1) in manufacturing; (2) to provide a service, information, or data to an unaffiliated third party for payment; (3) for therapeutic, diagnostic or prophylactic purposes; (4) to resell, sell, or otherwise transfer this product or its components to any third party, or for any other commercial purpose. Life Technologies Corporation will not assert a claim against the buyer of the infringement of the above patents based on the manufacture, use or sale of a commercial product developed in research by the buyer in which this product or its components was employed, provided that neither this product nor any of its components was used in the manufacture of such product. For information on purchasing a license to this product for purposes other than research, contact Life Technologies Corporation, Cell Analysis Business Unit, Business Development, 29851 Willow Creek Road, Eugene, OR 97402, Tel: (541) 465-8300. Fax: (541) 335-0354.

For research use only

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