| Literature DB >> 10381278 |
G Siegel1, M Malmsten, D Klüssendorf, W Leonhardt.
Abstract
Proteoheparan sulfate can be adsorbed to a methylated silica surface in a monomolecular layer via its transmembrane hydrophobic protein core domain. Due to electrostatic repulsion, its anionic polysugar side chains are stretched out into the blood substitute solution representing a co-receptor for specific lipoprotein binding through basic amino acid-rich residues within their apolipoproteins. The binding process was studied by ellipsometric techniques showing that oxLDL had a deleterious effect on heparan sulfate proteoglycan binding and conformation. Ca2+ binding to and storage on the proteoheparan sulfate/LDL compound formed a 'heterotrimeric' HS-PG/LDL/Ca2+ complex of high stability, aggregability and deposit coating. On the other hand, HDL bound to heparan sulfate proteoglycan protected against LDL docking and completely suppressed calcification of the proteoglycan/lipoprotein complex.Entities:
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Year: 1999 PMID: 10381278 DOI: 10.1016/s0021-9150(99)00042-8
Source DB: PubMed Journal: Atherosclerosis ISSN: 0021-9150 Impact factor: 5.162