19 research outputs found

    The major autoantibody epitope on factor H in atypical hemolytic uremic syndrome is structurally different from its homologous site in factor H-related protein 1, supporting a novel model for induction of autoimmunity in this disease

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    Atypical hemolytic uremic syndrome (aHUS) is characterized by complement attack against host cells due to mutations in complement proteins or autoantibodies against complement factor H (CFH). It is unknown why nearly all patients with autoimmune aHUS lack CFHR1 (CFH-related protein-1). These patients have autoantibodies against CFH domains 19 and 20 (CFH19-20), which are nearly identical to CFHR1 domains 4 and 5 (CFHR14-5). Here, binding site mapping of autoantibodies from 17 patients using mutant CFH19-20 constructs revealed an autoantibody epitope cluster within a loop on domain 20, next to the two buried residues that are different in CFH19-20 and CFHR14-5. The crystal structure of CFHR14-5 revealed a difference in conformation of the autoantigenic loop in the C-terminal domains of CFH and CFHR1, explaining the variation in binding of autoantibodies from some aHUS patients to CFH19-20 and CFHR14-5. The autoantigenic loop on CFH seems to be generally flexible, as its conformation in previously published structures of CFH19-20 bound to the microbial protein OspE and a sialic acid glycan is somewhat altered. Cumulatively, our data suggest that association of CFHR1 deficiency with autoimmune aHUS could be due to the structural difference between CFHR1 and the autoantigenic CFH epitope, suggesting a novel explanation for CFHR1 deficiency in the pathogenesis of autoimmune aHUS

    Early steps in the pathogenesis of B cell lymphomas of mucosa-associated lymphoid tissue (MALT)-type

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    B-Zell-Lymphome vom mukosa-assoziierten lymphatischen Gewebe (MALT)-Typ sind die größte Gruppe der extranodalen Lymphome. Sie enstehen vor dem Hintergrund einer chronischen Entzündung, wie etwa einer Helicobacter pylori-assoziierten Gastritis im Magen. Die Mechanismen der Lymphomgenese sind weitgehend unverstanden. Der Befund, dass die malignen B-Zellen der MALT-Typ Lymphome autoreaktiv sind und durch Antigen oder T-Zell-vermittelte Signale stimuliert werden, weist auf ein mögliches Ver-sagen der T-Zell-Kontrolle hin. Zur Prüfung dieser Hypothese wurden in der vorliegenden Arbeit sowohl tumor-infiltrierende T-Zellen als auch maligne B-Zellen aus MALT-Typ Lymphomen untersucht. Mit Hilfe von Expressionsanalysen der Vb -Kette des T-Zell-Rezeptors (TCR) wurden antigen-induzierte klonale Expansionen in den tumor-infiltrierenden T-Zellen nachgewiesen. Weiterhin wurden ähnliche antigen-erkennende Regionen (CDR3) des TCR in tumor-infiltrierenden T-Zellen aus zwei verschiedenen MALT-Typ Lymphomen gefunden. Diese Ergebnisse charakterisieren die T-Zellen als funktionell und auch als potenziell tumor-reaktiv. Um mögliche Defekte bei malignen B-Zellen zu untersuchen, wurde eine in vitro T/B-Zell-Kokultur entwickelt. Damit war es möglich, die Interaktion des apoptose-induzierenden Oberflächenmoleküls FasL auf aktivierten T-Zellen mit dem entsprechenden Todesrezeptor Fas auf malignen B-Zellen zu untersuchen. Drei von sieben MALT-Typ Lymphomen und vier von fünf DLBL erwiesen sich als resistent gegen FasL-vermittelte Apoptose. Meine Untersuchungen deuten darauf hin, dass hierfür eine mutationsbedingte funktionelle Inaktivierung des Fas-Rezeptors verantwortlich ist. In Fas-Transkripten aller untersuchten malignen B-Zellen wurden insgesamt 14 verschiedene Punktmutationen gefunden, die zu Aminosäureaustauschen bei der Translation führen. Zehn dieser Mutationen waren mit der Apoptose-Resistenz maligner B-Zellen assoziiert. Durch ergänzende Untersuchungen konnten alternative Mechanismen der Apoptose-Resistenz wie etwa reduzierte Fas-Expression, Produktion von löslichem Fas (sFas) oder Störungen in der Fas-Signalkaskade weitgehend ausgeschlossen werden. Aus diesen Ergebnissen lässt sich folgender Schluss ziehen: Resistenz gegen FasL/Fas-vermittelte Apoptose ist ein Mechanismus der frühen MALT-Typ Lymphomgenese und möglicherweise auf bestimmte Fas-Mutationen zurückzuführen. Durch Apoptose-Resistenz entkommen die malignen B-Zellen der MALT-Typ Lymphome der vorhandenen T-Zell-Kontrolle. Gleichzeitig nehmen sie die parakrin angebotene T-Zell-Hilfe solange in Anspruch, bis sie völlige Autonomie erreicht haben. Durch das abnorm verlängerte Überleben der B-Zellen steigt dann die Wahrscheinlichkeit, weitere Aberrationen wie etwa die in 50 Prozent aller Fälle auftretende Chromosomentranslokation t(11;18)(q21;q21) zu erwerben.The largest group of extranodal lymphomas are B cell lymphomas of mucosa-associated lymphoid tissue (MALT)-type. They arise on the background of chronic inflammation, e.g. the Helicobacter pylori-associated gastritis in the stomach. The mechanism of MALT-type lymphomagenesis is still enigmatic. The finding of autoreactive malignant B cells which proliferate in response to antigen and T cell-mediated signals may suggest a failure of T cell control. For testing this hypothesis we examined both tumor-infiltrating T cells and malignant B cells of various MALT-type lymphomas. By expression analysis of the T cell receptor (TCR) Vb chain we showed clonal expansions of T cells due to antigenic stimulation. Furthermore we found similar antigen-binding regions (CDR3) in the TCR of tumor-infiltrating T cells in two different MALT-type lymphomas, that indicate potential antitumor-reactivity of the tumor-infiltrating T cells. Furthermore we established an in vitro T/B cell coculture assay for investigating the B cells and focused on the interaction of the pro-apoptotic molecule FasL on activated T cells with its corresponding death receptor Fas on malignant B cells. The malignant B cells from three out of seven MALT-type lymphomas and four out of five DLBL were resistant to FasL/Fas-mediated apoptosis. My results indicate that this is probably due to mutational inactivation of the Fas receptor. In Fas transcripts of malignant B cells from all cases investigated, 14 different point mutations leading to amino acid changes were found. Ten of these mutations were associated with resistance to apoptosis of malignant B cells. Additional investigations showed, that alternative mechanisms of resistance to apoptosis such as decreased expression of Fas, production of soluble Fas (sFas) or an impaired signalling cascade downstream of Fas were not operative. From the results we conclude the following: Resistance to FasL/Fas-mediated apoptosis is a mechanism of early MALT-type lymphomagenesis that could be due to certain Fas mutations. By this mechanism the B cells are able to escape T cell control while still receiving T cell help until they reach autonomous growth. The prolonged survival of the B cells might increase the risk of acquiring additional aberrations, such as the chromosomal translocation t(11;18)(q21;21) which is found in 50 per cent of all MALT-type lymphomas

    Alterations of the Human Skin N- and O-Glycome in Basal Cell Carcinoma and Squamous Cell Carcinoma

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    The glycome of one of the largest and most exposed human organs, the skin, as well as glycan changes associated with non-melanoma skin cancers have not been studied in detail to date. Skin cancers such as basal cell carcinoma (BCC) and squamous cell carcinoma (SCC) are among the most frequent types of cancers with rising incidence rates in the aging population. We investigated the healthy human skin N- and O-glycome and its changes associated with BCC and SCC. Matched patient samples were obtained from frozen biopsy and formalin-fixed paraffin-embedded tissue samples for glycomics analyses using two complementary glycomics approaches: porous graphitized carbon nano-liquid chromatography electro spray ionization tandem mass spectrometry and capillary gel electrophoresis with laser induced fluorescence detection. The human skin N-glycome is dominated by complex type N-glycans that exhibit almost similar levels of α2-3 and α2-6 sialylation. Fucose is attached exclusively to the N-glycan core. Core 1 and core 2 type O-glycans carried up to three sialic acid residues. An increase of oligomannose type N-glycans and core 2 type O-glycans was observed in BCC and SCC, while α2-3 sialylation levels were decreased in SCC but not in BCC. Furthermore, glycopeptide analyses provided insights into the glycoprotein candidates possibly associated with the observed N-glycan changes, with glycoproteins associated with binding events being the most frequently identified class

    Alterations of the Human Skin N- and O-Glycome in Basal Cell Carcinoma and Squamous Cell Carcinoma

    No full text
    The glycome of one of the largest and most exposed human organs, the skin, as well as glycan changes associated with non-melanoma skin cancers have not been studied in detail to date. Skin cancers such as basal cell carcinoma (BCC) and squamous cell carcinoma (SCC) are among the most frequent types of cancers with rising incidence rates in the aging population. We investigated the healthy human skin N- and O-glycome and its changes associated with BCC and SCC. Matched patient samples were obtained from frozen biopsy and formalin-fixed paraffin-embedded tissue samples for glycomics analyses using two complementary glycomics approaches: porous graphitized carbon nano-liquid chromatography electro spray ionization tandem mass spectrometry and capillary gel electrophoresis with laser induced fluorescence detection. The human skin N-glycome is dominated by complex type N-glycans that exhibit almost similar levels of α2-3 and α2-6 sialylation. Fucose is attached exclusively to the N-glycan core. Core 1 and core 2 type O-glycans carried up to three sialic acid residues. An increase of oligomannose type N-glycans and core 2 type O-glycans was observed in BCC and SCC, while α2-3 sialylation levels were decreased in SCC but not in BCC. Furthermore, glycopeptide analyses provided insights into the glycoprotein candidates possibly associated with the observed N-glycan changes, with glycoproteins associated with binding events being the most frequently identified class.Full Tex

    Binding of Complement Factor H to Endothelial Cells Is Mediated by the Carboxy-Terminal Glycosaminoglycan Binding Site

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    Factor H (FH), the major fluid phase regulator of the alternative complement pathway, mediates protection of plasma-exposed host structures. It has recently been shown that short consensus repeats 19 to 20 of FH are mutational hot spots associated with atypical hemolytic uremic syndrome (aHUS), a disease with endothelial cell damage. Domain 20 of FH contains binding sites for heparin, C3b, and the cleavage product C3d. To study the role of these binding sites in target recognition, we performed site-directed mutagenesis in domain 20 and assayed the resulting recombinant proteins. The mutant FH15-20A (substitutions R1203E, R1206E, and R1210S) bound neither heparin nor endothelial cells. Similarly, an aHUS-derived mutant FH protein (E1172Stop, lacking domain 20) failed to bind endothelial cells and showed impaired binding to heparin. Binding of FH to endothelial cells was inhibited by heparin and a specific monoclonal antibody that inhibited heparin but not C3d binding, demonstrating that the heparin site on domains 19 to 20 mediates interaction of FH to endothelial cells. Binding of FH15-20 to heparin was inhibited by several cell surface- and basement membrane-associated glycosaminoglycans, suggesting that binding site specificity is not restricted to heparin. Thus, defective heparin/glycosaminoglycan-binding site on domains 19 to 20 of FH most probably mediates complement-induced endothelial cell damage in aHUS

    Table_2.PDF

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    <p>The glycome of one of the largest and most exposed human organs, the skin, as well as glycan changes associated with non-melanoma skin cancers have not been studied in detail to date. Skin cancers such as basal cell carcinoma (BCC) and squamous cell carcinoma (SCC) are among the most frequent types of cancers with rising incidence rates in the aging population. We investigated the healthy human skin N- and O-glycome and its changes associated with BCC and SCC. Matched patient samples were obtained from frozen biopsy and formalin-fixed paraffin-embedded tissue samples for glycomics analyses using two complementary glycomics approaches: porous graphitized carbon nano-liquid chromatography electro spray ionization tandem mass spectrometry and capillary gel electrophoresis with laser induced fluorescence detection. The human skin N-glycome is dominated by complex type N-glycans that exhibit almost similar levels of α2-3 and α2-6 sialylation. Fucose is attached exclusively to the N-glycan core. Core 1 and core 2 type O-glycans carried up to three sialic acid residues. An increase of oligomannose type N-glycans and core 2 type O-glycans was observed in BCC and SCC, while α2-3 sialylation levels were decreased in SCC but not in BCC. Furthermore, glycopeptide analyses provided insights into the glycoprotein candidates possibly associated with the observed N-glycan changes, with glycoproteins associated with binding events being the most frequently identified class.</p

    Data_Sheet_5.xlsx

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    <p>The glycome of one of the largest and most exposed human organs, the skin, as well as glycan changes associated with non-melanoma skin cancers have not been studied in detail to date. Skin cancers such as basal cell carcinoma (BCC) and squamous cell carcinoma (SCC) are among the most frequent types of cancers with rising incidence rates in the aging population. We investigated the healthy human skin N- and O-glycome and its changes associated with BCC and SCC. Matched patient samples were obtained from frozen biopsy and formalin-fixed paraffin-embedded tissue samples for glycomics analyses using two complementary glycomics approaches: porous graphitized carbon nano-liquid chromatography electro spray ionization tandem mass spectrometry and capillary gel electrophoresis with laser induced fluorescence detection. The human skin N-glycome is dominated by complex type N-glycans that exhibit almost similar levels of α2-3 and α2-6 sialylation. Fucose is attached exclusively to the N-glycan core. Core 1 and core 2 type O-glycans carried up to three sialic acid residues. An increase of oligomannose type N-glycans and core 2 type O-glycans was observed in BCC and SCC, while α2-3 sialylation levels were decreased in SCC but not in BCC. Furthermore, glycopeptide analyses provided insights into the glycoprotein candidates possibly associated with the observed N-glycan changes, with glycoproteins associated with binding events being the most frequently identified class.</p

    Table_1.PDF

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    <p>The glycome of one of the largest and most exposed human organs, the skin, as well as glycan changes associated with non-melanoma skin cancers have not been studied in detail to date. Skin cancers such as basal cell carcinoma (BCC) and squamous cell carcinoma (SCC) are among the most frequent types of cancers with rising incidence rates in the aging population. We investigated the healthy human skin N- and O-glycome and its changes associated with BCC and SCC. Matched patient samples were obtained from frozen biopsy and formalin-fixed paraffin-embedded tissue samples for glycomics analyses using two complementary glycomics approaches: porous graphitized carbon nano-liquid chromatography electro spray ionization tandem mass spectrometry and capillary gel electrophoresis with laser induced fluorescence detection. The human skin N-glycome is dominated by complex type N-glycans that exhibit almost similar levels of α2-3 and α2-6 sialylation. Fucose is attached exclusively to the N-glycan core. Core 1 and core 2 type O-glycans carried up to three sialic acid residues. An increase of oligomannose type N-glycans and core 2 type O-glycans was observed in BCC and SCC, while α2-3 sialylation levels were decreased in SCC but not in BCC. Furthermore, glycopeptide analyses provided insights into the glycoprotein candidates possibly associated with the observed N-glycan changes, with glycoproteins associated with binding events being the most frequently identified class.</p
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