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Sökning: WFRF:(Heinegård Dick) > Medicin och hälsovetenskap

  • Resultat 1-10 av 167
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1.
  • Holmér, Andreas, et al. (författare)
  • The factor H variant associated with age-related macular degeneration (H384) and the non-disease associated form bind differentially to C-reactive protein, fibromodulin, DNA and necrotic cells.
  • 2007
  • Ingår i: Journal of Biological Chemistry. - 1083-351X. ; 282:15, s. 10894-10900
  • Tidskriftsartikel (refereegranskat)abstract
    • Recently, a polymorphism in the complement regulator factor H (FH) gene has been associated with age-related macular degeneration. When histidine instead of tyrosine is present at position 384 in the seventh complement control protein (CCP) domain of FH, the risk for age-related macular degeneration is increased. It was recently shown that these allotypic variants of FH, in the context of a recombinant construct corresponding to CCPs 6 - 8, recognize polyanionic structures differently, which may lead to altered regulation of the alternative pathway of complement. We show now that His-384, corresponding to the risk allele, binds C-reactive protein (CRP) poorly compared with the Tyr-384 form. We also found that C1q and phosphorylcholine do not compete with FH for binding to C-reactive protein. The interaction with extracellular matrix protein fibromodulin, which we now show to be mediated, at least in part, by CCP6 - 8 of FH, occurs via the polypeptide of fibromodulin and not through its glycosaminoglycan modifications. The Tyr-384 variant of FH bound fibromodulin better than the His-384 form. Furthermore, we find that CCP6 - 8 is able to interact with DNA and necrotic cells, but in contrast the His-384 allotype binds these ligands more strongly than the Tyr-384 variant. The variations in binding affinity of the two alleles indicate that complement activation and local inflammation in response to different targets will differ between His/His and Tyr/Tyr homozygotes.
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3.
  • Melin Fürst, Camilla, et al. (författare)
  • The C-type lectin of the aggrecan g3 domain activates complement.
  • 2013
  • Ingår i: PLoS ONE. - : Public Library of Science (PLoS). - 1932-6203. ; 8:4
  • Tidskriftsartikel (refereegranskat)abstract
    • Excessive complement activation contributes to joint diseases such as rheumatoid arthritis and osteoarthritis during which cartilage proteins are fragmented and released into the synovial fluid. Some of these proteins and fragments activate complement, which may sustain inflammation. The G3 domain of large cartilage proteoglycan aggrecan interacts with other extracellular matrix proteins, fibulins and tenascins, via its C-type lectin domain (CLD) and has important functions in matrix organization. Fragments containing G3 domain are released during normal aggrecan turnover, but increasingly so in disease. We now show that the aggrecan CLD part of the G3 domain activates the classical and to a lesser extent the alternative pathway of complement, via binding of C1q and C3, respectively. The complement control protein (CCP) domain adjacent to the CLD showed no effect on complement initiation. The binding of C1q to G3 depended on ionic interactions and was decreased in D2267N mutant G3. However, the observed complement activation was attenuated due to binding of complement inhibitor factor H to CLD and CCP domains. This was most apparent at the level of deposition of terminal complement components. Taken together our observations indicate aggrecan CLD as one factor involved in the sustained inflammation of the joint.
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4.
  • Holmér, Andreas, et al. (författare)
  • The extracellular matrix and inflammation - Fibromodulin activates the classical pathway of complement by directly binding C1q
  • 2005
  • Ingår i: Journal of Biological Chemistry. - 1083-351X. ; 280:37, s. 32301-32308
  • Tidskriftsartikel (refereegranskat)abstract
    • Components that propagate inflammation in joint disease may be derived from cartilage since the inflammation resolves after joint replacement. We found that the cartilage component fibromodulin has the ability to activate an inflammatory cascade, i.e. complement. Fibromodulin and immunoglobulins cause comparable deposition of C1q, C4b, and C3b from human serum. Using C1q and factor B-deficient sera in combination with varying contents of metal ions, we established that fibromodulin activates both the classical and the alternative pathways of complement. Further studies revealed that fibromodulin binds directly to the globular heads of C1q, leading to activation of C1. However, deposition of the membrane attack complex and C5a release were lower in the presence of fibromodulin as compared with IgG. This can be explained by the fact that fibromodulin also binds complement inhibitor factor H. Factor H and C1q bind to non-overlapping sites on fibromodulin, but none of the interactions is mediated by the negatively charged keratan sulfate substituents of fibromodulin. C1q but not factor H binds to an N-terminal fragment of fibromodulin previously implicated to be affected in cartilage stimulated with the inflammatory cytokine interleukin 1. Taken together our observations indicate fibromodulin as one factor involved in the sustained inflammation of the joint.
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5.
  • Halasz, Krisztina, et al. (författare)
  • COMP acts as a catalyst in collagen fibrillogenesis
  • 2007
  • Ingår i: Journal of Biological Chemistry. - 1083-351X. ; 282:43, s. 31166-31173
  • Tidskriftsartikel (refereegranskat)abstract
    • We have previously reported that COMP (cartilage oligomeric matrix protein) is prominent in cartilage but is also present in tendon and binds to collagens I and II with high affinity. Here we show that COMP influences the fibril formation of these collagens. Fibril formation in the presence of pentameric COMP was much faster, and the amount of collagen in fibrillar form was markedly increased. Monomeric COMP, lacking the N-terminal coiled-coil linker domain, decelerated fibrillogenesis. The data show that stimulation of collagen fibrillogenesis depends on the pentameric nature of COMP and not only on collagen binding. COMP interacts primarily with free collagen I and II molecules, bringing several molecules to close proximity, apparently promoting further assembly. These assemblies further join in discrete steps to a narrow distribution of completed fibril diameters of 149 +/- 16 nm with a banding pattern of 67 nm. COMP is not found associated with the mature fibril and dissociates from the collagen molecules or their early assemblies. However, a few COMP molecules are found bound to more loosely associated molecules at the tip/end of the growing fibril. Thus, COMP appears to catalyze the fibril formation by promoting early association of collagen molecules leading to increased rate of fibrillogenesis and more distinct organization of the fibrils.
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6.
  • Hansson, Ann-Sofie, et al. (författare)
  • Relapsing polychondritis, induced in mice with matrilin 1, is an antibody- and complement-dependent disease
  • 2004
  • Ingår i: American Journal of Pathology. - New York, NY : Elsevier. - 0002-9440 .- 1525-2191. ; 164:3, s. 959-966
  • Tidskriftsartikel (refereegranskat)abstract
    • Relapsing polychondritis is an autoimmune disease that affects cartilage in the ear, nose, and respiratory tract. A pathogenic immune response has been proposed and antibodies to several cartilage proteins are detected in sera from these patients. To investigate the role of the humoral immune response in relapsing polychondritis, we used the matrilin-1-induced relapsing polychondritis model. Mice deficient of B cells (muMT) and mice congenic at the complement factor 5, were immunized with matrilin-1, a cartilage-specific protein mainly detected in the tracheal cartilage. To investigate the binding properties and tissue selection of matrilin-1-specific antibodies we produced matrilin-1-specific B-cell hybridomas. Although 83% of the micro MT heterozygous mice developed respiratory distress and erosive chondritis in the respiratory tract, none of the B-cell-deficient mice were susceptible to disease. In addition, we show that complement factor 5 is important for the induction of matrilin-1-induced relapsing polychondritis. Monoclonal matrilin-1-specific antibodies injected into neonatal mice bound specifically to cartilage of the respiratory tract and adult B-cell-deficient mice injected with the same antibodies developed erosive chondritis in the respiratory tract. We conclude that relapsing polychondritis can be mediated by a pathway involving tissue-specific antibodies and complement activation.
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7.
  • Happonen, Kaisa, et al. (författare)
  • PRELP Protein Inhibits the Formation of the Complement Membrane Attack Complex
  • 2012
  • Ingår i: Journal of Biological Chemistry. - 1083-351X. ; 287:11, s. 8092-8100
  • Tidskriftsartikel (refereegranskat)abstract
    • PRELP is a 58-kDa proteoglycan found in a variety of extracellular matrices, including cartilage and at several basement membranes. In rheumatoid arthritis (RA), the cartilage tissue is destroyed and fragmented molecules, including PRELP, are released into the synovial fluid where they may interact with components of the complement system. In a previous study, PRELP was found to interact with the complement inhibitor C4b-binding protein, which was suggested to locally down-regulate complement activation in joints during RA. Here we show that PRELP directly inhibits all pathways of complement by binding C9 and thereby prevents the formation of the membrane attack complex (MAC). PRELP does not interfere with the interaction between C9 and already formed C5b-8, but inhibits C9 polymerization thereby preventing formation of the lytic pore. The alternative pathway is moreover inhibited already at the level of C3-convertase formation due to an interaction between PRELP and C3. This suggests that PRELP may down-regulate complement attack at basement membranes and on damaged cartilage and therefore limit pathological complement activation in inflammatory disease such as RA. The net outcome of PRELP-mediated complement inhibition will highly depend on the local concentration of other complement modulating molecules as well as on the local concentration of available complement proteins.
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8.
  • Hauser, Nik, et al. (författare)
  • Interaction of cartilage matrix protein with aggrecan. Increased covalent cross-linking with tissue maturation
  • 1996
  • Ingår i: Journal of Biological Chemistry. - 1083-351X. ; 271:50, s. 32247-32252
  • Tidskriftsartikel (refereegranskat)abstract
    • Cartilage matrix protein (CMP) is a trimeric protein present in many types of cartilage extracellular matrix. It has recently been purified under native conditions that allowed the proposal of a structural model (Hauser, N., and Paulsson, M. (1994) J. Biol. Chem. 269, 25747-25753). To examine the functional properties of CMP we studied its interaction with aggrecan within cartilage extracellular matrix. Aggrecan-enriched fractions were purified from bovine tracheal cartilage of different ages under nondenaturing and denaturing conditions, respectively, and characterized by a combination of biochemical methods and electron microscopy. The fractions contained a pool of CMP noncovalently associated with aggrecan as well as a pool of CMP that appears covalently cross-linked to the aggrecan core protein. Only about two thirds of the CMP subunits could be released even upon reduction under denaturing conditions. It appears that CMP is attached by a nonreducible covalent interaction of one of its subunits with the protein core. The amount of CMP strongly bound to aggrecan increases with age. Electron microscopy revealed interaction sites for CMP in the extended chondroitin-sulfate attachment domain E2. In old tissue five distinct binding sites for CMP were found while in young cartilage only three of these were occupied. The extent of decoration of E2 with CMP increases with age.
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9.
  • Heinegård, Dick, et al. (författare)
  • Glycosylated matrix protein
  • 2002
  • Ingår i: Connective tissue and its heritable disorders: molecular, genetic, and medical aspects, 2nd edition. - Hoboken, NJ, USA : John Wiley & Sons, Inc.. - 9780471251859 ; , s. 271-291
  • Bokkapitel (övrigt vetenskapligt/konstnärligt)abstract
    • Connective tissues have many features in common, including resisting and dissipating mechanical load and providing shape, as well as acting to provide barriers regulating water flow and diffusibility of macromolecules. In this chapter we have chosen to focus on cartilage and bone, covering many aspects of connective tissues. We give special focus to the noncollagenous proteins in their matrices.
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10.
  • Heinegård, Dick, et al. (författare)
  • Glycosylated Matrix Proteins
  • 2002
  • Ingår i: Connective Tissue and Its Heritable Disorders: Molecular, Genetic and Medical Aspects. - Hoboken, NJ, USA : John Wiley & Sons, Inc.. - 9780471251859 - 9780471221920 ; , s. 271-291
  • Bokkapitel (övrigt vetenskapligt/konstnärligt)abstract
    • Connective tissues have many features in common, including resisting and dissipating mechanical load and providing shape, as well as acting to provide barriers regulating water flow and diffusibility of macromolecules. In this chapter we have chosen to focus on cartilage and bone, covering many aspects of connective tissues. We give special focus to the noncollagenous proteins in their matrices.
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