Literature DB >> 845156

Polydispersity of cartilage proteoglycans. Structural variations with size and buoyant density of the molecules.

D Heinegård.   

Abstract

Proteoglycan monomers were subfractionated according to buoyant density by dissociative CsCl density gradient centrifugation. It was shown that with decreasing buoyant density of the proteoglycan subfraction: (a) the average sizes of the molecules decreased (shown by Sepharose 2B chromatography); (b) the relative content of chondroitin sulfate decreased; (c) the relative content of protein increased; (d) the relative proportion of the amino acids glycine and serine, which occur close to the chondroitin sulfate-peptide linkage, decreased; (e) the relative proportion of the hyaluronic acid-binding region released by treatment of proteoglycans with cyanogen bromide increased; (f) the relative content of the keratan sulfate-enriched region increased. The data indicate that proteoglycans contain a nonvariable hyaluronic acid-binding region, a keratan sulfate-enriched region and a chondroitin sulfate-enriched region of variable size. It is concluded that proteoglycans vary in size mainly because of variations in the size of the chondroitin sulfate-enriched region. Additional data were obtained using subfractions of proteoglycan monomers isolated according to size differences by using Sepharose 2B chromatography. The Kav values of the subfractions on Sepharose 2B ranged from 0 to 0.54. Analyses of these subfractions showed the same variations with size of the content of chondroitin sulfate, protein, amino acids, hyaluronic acid-binding region, and keratan sulfate-enriched region, as was shown for the subfractions isolated at different buoyant densities in the dissociative gradient.

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Year:  1977        PMID: 845156

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  58 in total

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5.  Immunohistochemical localization of articular cartilage proteoglycan and link protein in situ using monoclonal antibodies and lectin-binding methods.

Authors:  S Hoedt-Schmidt; J McClure; M K Jasani; D A Kalbhen
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6.  Separation and characterization of two populations of aggregating proteoglycans from cartilage.

Authors:  D Heinegård; J Wieslander; J Sheehan; M Paulsson; Y Sommarin
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7.  Identification of a hyaluronic acid-binding protein that interferes with the preparation of high-buoyant-density proteoglycan aggregates from adult human articular cartilage.

Authors:  P J Roughley; R J White; A R Poole
Journal:  Biochem J       Date:  1985-10-01       Impact factor: 3.857

8.  Molecular NMR T2 values can predict cartilage stress-relaxation parameters.

Authors:  Ronald K June; David P Fyhrie
Journal:  Biochem Biophys Res Commun       Date:  2008-09-24       Impact factor: 3.575

9.  Age-related changes in the composition and structure of human articular-cartilage proteoglycans.

Authors:  M T Bayliss; S Y Ali
Journal:  Biochem J       Date:  1978-12-15       Impact factor: 3.857

10.  Articular-cartilage proteoglycans in aging and osteoarthritis.

Authors:  S Inerot; D Heinegård; L Audell; S E Olsson
Journal:  Biochem J       Date:  1978-01-01       Impact factor: 3.857

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