14
Views
1
CrossRef citations to date
0
Altmetric
Articles

Endocytosis of Advanced Glycation End-Products in Bovine Choriocapillaris Endothelial Cells

, , , , , , & show all
Pages 640-655 | Received 21 Oct 2008, Published online: 15 Sep 2009

References

  • Araki N, Higashi T, Mori T, Shibayama R, Kawabe Y, Kodama T, et al. Macrophage scavenger receptor mediates the endocytic uptake and degradation of advanced glycation end products of the Maillard reaction. Eur J Biochem 1995; 230: 408–415
  • Barile GR, Schmidt AM. RAGE and its ligands in retinal disease. Curr Mol Med 2007; 7: 758–765
  • Baynes JW. The role of AGEs in aging: causation or correlation. Exp Gerontol 2001; 36: 1527–1537
  • Blomhoff R, Eskild W, Berg T. Endocytosis of formaldehyde-treated serum albumin via scavenger pathway in liver endothelial cells. Biochem J 1984; 218: 81–86
  • Brownlee M, Cerami A, Vlassara H. Advanced glycosylation end-products in tissue and the biochemical basis of diabetic complications. N Engl J Med 1988; 318: 1315–1321
  • de Rijke YB, van Berkel TJ. Rat liver Kupffer and endothelial cells express different binding proteins for modified low-density lipoproteins. Kupffer cells express a 95-kDa membrane protein as a specific binding site for oxidized low-density lipoproteins. J Biol Chem 1994; 269: 824–827
  • Elvevold KH, Nedredal GI, Revhaug A, Smedsrod B. Scavenger properties of cultivated pig liver endothelial cells. Comp Hepatol 2004; 3: 4
  • Falkowski M, Schledzewski K, Hansen B, Goerdt S. Expression of stabilin-2, a novel fasciclin-like hyaluronan receptor protein, in murine sinusoidal endothelia, avascular tissues, and at solid/liquid interfaces. Histochem Cell Biol 2003; 120: 361–369
  • Farboud B, Aotaki-Keen A, Miyata T, Hjelmeland LM, Handa JT. Development of a polyclonal antibody with broad epitope specificity for advanced glycation end-products and localization of these epitopes in Bruch's membrane of the aging eye. Mol Vis 1999; 5: 11
  • Gardiner TA, Archer DB. Endocytosis in the retinal and choroidal microcirculation. Br J Ophthalmol 1986; 70: 361–372
  • Hammes HP, Hoerauf H, Alt A, Schleicher E, Clausen JT, Bretzel RG, et al. N(epsilon)(carboxymethyl)lysin and the AGE receptor RAGE colocalize in age-related macular degeneration. Invest Ophthalmol Vis Sci 1999; 40: 1855–1859
  • Handa JT, Reiser KM, Matsunaga H, Hjelmeland LM. The advanced glycation endproduct pentosidine induces the expression of PDGF-B in human retinal pigment epithelial cells. Exp Eye Res 1998; 66: 411–419
  • Handa JT, Verzijl N, Matsunaga H, Aotaki-Keen A, Lutty GA, te Koppele JM, et al. Increase in the advanced glycation end product pentosidine in Bruch's membrane with age. Invest Ophthalmol Vis Sci 1999; 40: 775–779
  • Hansen B, Longati P, Elvevold K, Nedredal GI, Schledzewski K, Olsen R, et al. Stabilin-1 and stabilin-2 are both directed into the early endocytic pathway in hepatic sinusoidal endothelium via interactions with clathrin/AP-2, independent of ligand binding. Exp Cell Res 2005; 303: 160–173
  • Hansen B, Svistounov D, Olsen R, Nagai R, Horiuchi S, Smedsrod B. Advanced glycation end-products impair the scavenger function of rat hepatic sinusoidal endothelial cells. Diabetologia 2002; 45: 1379–1388
  • Henle T, Miyata T. Advanced glycation end-products in uremia. Adv Ren Replace Ther 2003; 10: 321–331
  • Hoffmann S, Friedrichs U, Eichler W, Rosenthal A, Wiedemann P. Advanced glycation end-products induce choroidal endothelial cell proliferation, matrix metalloproteinase-2, and VEGF upregulation in vitro. Graefe's Arch Clin Exp Ophthalmol 2002; 240: 996–1002
  • Honjo M, Sawamura T, Hinagata J, Nakamura K, Sanada N, Tanihara H, et al. Expression of LOX-1, an oxidized low-density lipoprotein receptor, in choroidal neovascularization. Arch Ophthalmol 2004; 122: 1873–1876
  • Horiuchi S, Sakamoto Y, Sakai M. Scavenger receptors for oxidized and glycated proteins. Amino Acids 2003; 25: 283–292
  • Irjala H, Elima K, Johansson EL, Merinen M, Kontula K, Alanen K, et al. The same endothelial receptor controls lymphocyte traffic both in vascular and lymphatic vessels. Eur J Immunol 2003; 33: 815–824
  • Ishibashi T, Murata T, Hangai M, Nagai R, Horiuchi S, Lopez PF, et al. Advanced glycation end-products in age-related macular degeneration. Arch Ophthalmol 1998; 116: 1629–1632
  • Jono T, Miyazaki A, Nagai R, Sawamura T, Kitamura T, Horiuchi S. Lectin-like oxidized low-density lipoprotein receptor-1 (LOX-1) serves as an endothelial receptor for advanced glycation end-products (AGE). FEBS Lett 2002; 511: 170–174
  • Kuniyasu A, Ohgami N, Hayashi S, Miyazaki A, Horiuchi S, Nakayama H. CD36-mediated endocytic uptake of advanced glycation end-products (AGE) in mouse 3T3-L1 and human subcutaneous adipocytes. FEBS Lett 2003; 537: 85–90
  • Kzhyshkowska J, Mamidi S, Gratchev A, Kremmer E, Schmuttermaier C, Krusell L, et al. Novel stabilin-1 interacting chitinase-like protein (SI-CLP) is upregulated in alternatively activated macrophages and secreted via lysosomal pathway. Blood 2006; 107: 3221–3228
  • Kzhyshkowska J, Workman G, Cardo-Vila M, Arap W, Pasqualini R, Gratchev A, et al. Novel function of alternatively activated macrophages: stabilin-1–mediated clearance of SPARC. J Immunol 2006; 176: 5825–5832
  • Liu X, Li W. Isolation, culture, and characterization of bovine choriocapillary endothelial cells. Exp Eye Res 1993; 57: 37–44
  • Liu X, Ye X, Yanoff M, Li W. Extracellular matrix of retinal pigment epithelium regulates choriocapillaris endothelial survival in vitro. Exp Eye Res 1997; 65: 117–126
  • McCourt PA, Smedsrod BH, Melkko J, Johansson S. Characterization of a hyaluronan receptor on rat sinusoidal liver endothelial cells and its functional relationship to scavenger receptors. Hepatology 1999; 30: 1276–1286
  • Mego JL, Bertini F, McQueen JD. The use of formaldehyde-treated 131-I-albumin in the study of digestive vacuoles and some properties of these particles from mouse liver. J Cell Biol 1967; 32: 699–707
  • Melkko J, Hellevik T, Risteli L, Risteli J, Smedsrod B. Clearance of NH2-terminal propeptides of types I and III procollagen is a physiological function of the scavenger receptor in liver endothelial cells. J Exp Med 1994; 179: 405–412
  • Munch G, Schinzel R, Loske C, Wong A, Durany N, Li JJ, et al. Alzheimer's disease—synergistic effects of glucose deficit, oxidative stress, and advanced glycation endproducts. J Neural Transm 1998; 105: 439–461
  • Pino RM. Binding and endocytosis of heparin-gold conjugates by the fenestrated endothelium of the rat choriocapillaris. Cell Tissue Res 1987; 250: 257–266
  • Politz O, Gratchev A, McCourt PA, Schledzewski K, Guillot P, Johansson S, et al. Stabilin-1 and -2 constitute a novel family of fasciclin-like hyaluronan receptor homologues. Biochem J 2002; 362: 155–164
  • Prevo R, Banerji S, Ni J, Jackson DG. Rapid plasma membrane-endosomal trafficking of the lymph node sinus and high endothelial venule scavenger receptor/homing receptor stabilin-1 (FEEL-1/CLEVER-1). J Biol Chem 2004; 279: 52580–52592
  • Sawamura T, Kume N, Aoyama T, Moriwaki H, Hoshikawa H, Aiba Y, et al. An endothelial receptor for oxidized low-density lipoprotein. Nature 1997; 386: 73–77
  • Scopes, RK. 1993. Protein Purification: Principles and Practice 3rd ed. Springer-Verlag: New York and Heidelberg.
  • Sell DR, Lane MA, Johnson WA, Masoro EJ, Mock OB, Reiser KM, et al. Longevity and the genetic determination of collagen glycoxidation kinetics in mammalian senescence. Proc Natl Acad Sci U S A 1996; 93: 485–490
  • Seternes T, Sorensen K, Smedsrod B. Scavenger endothelial cells of vertebrates: a nonperipheral leukocyte system for high-capacity elimination of waste macromolecules. Proc Natl Acad Sci U S A 2002; 99: 7594–7597
  • Shimokawa I, Higami Y, Horiuchi S, Iwasaki M, Ikeda T. Advanced glycosylation end products in adrenal lipofuscin. J Gerontol A Biol Sci Med Sci 1998; 53: B49–B51
  • Singh R, Barden A, Mori T, Beilin L. Advanced glycation end-products: a review. Diabetologia 2001; 44: 129–146
  • Smedsrod B. Clearance function of scavenger endothelial cells. Comp Hepatol 2004; 3(Suppl 1)S22
  • Smedsrod B, Kjellen L, Pertoft H. Endocytosis and degradation of chondroitin sulphate by liver endothelial cells. Biochem J 1985; 229: 63–71
  • Smedsrod B, Melkko J, Araki N, Sano H, Horiuchi S. Advanced glycation end-products are eliminated by scavenger-receptor–mediated endocytosis in hepatic sinusoidal Kupffer and endothelial cells. Biochem J 1997; 322(Pt 2)567–573
  • Smith SS, Pino RM, Thouron CL. Binding and transport of transthyretin-gold by the endothelium of the rat choriocapillaris. J Histochem Cytochem 1989; 37: 1497–1502
  • Sorensen KK, Melkko J, Smedsrod B. Scavenger-receptor–mediated endocytosis in endocardial endothelial cells of Atlantic cod Gadus morhua. J Exp Biol 1998; 201: 1707–1718
  • Stitt, AW, Bucala, R, Vlassara, H. 1997. Atherogenesis and advanced glycation: promotion, progression, and prevention. Ann N Y Acad Sci, 811:115–127; discussion, 127–129.
  • Takata K, Horiuchi S, Araki N, Shiga M, Saitoh M, Morino Y. Endocytic uptake of nonenzymatically glycosylated proteins is mediated by a scavenger receptor for aldehyde-modified proteins. J Biol Chem 1988; 263: 14819–14825
  • Tamura Y, Adachi H, Osuga J, Ohashi K, Yahagi N, Sekiya M, et al. FEEL-1 and FEEL-2 are endocytic receptors for advanced glycation end-products. J Biol Chem 2003; 278: 12613–12617
  • van der Sluijs P, Bootsma HP, Postema B, Moolenaar F, Meijer DK. Drug targeting to the liver with lactosylated albumins: does the glycoprotein target the drug or is the drug targeting the glycoprotein?. Hepatology 1986; 6: 723–728
  • Weigel JA, Weigel PH. Characterization of the recombinant rat 175-kDa hyaluronan receptor for endocytosis (HARE). J Biol Chem 2003; 278: 42802–42811
  • Yuan SY, Breslin JW, Perrin R, Gaudreault N, Guo M, et al. Microvascular permeability in diabetes and insulin resistance. Microcirculation 2007; 14: 363–373
  • Yan SF, Ramasamy R, Schmidt AM. Mechanisms of disease: advanced glycation end-products and their receptor in inflammation and diabetes complications. Nat Clin Pract Endocrinol Metab 2008; 4: 285–293
  • Zhou B, Weigel JA, Saxena A, Weigel PH. Molecular cloning and functional expression of the rat 175-kDa hyaluronan receptor for endocytosis. Mol Biol Cell 2002; 13: 2853–2868

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.