TY - THES A1 - Kroner, Antje T1 - Klonierung und Charakterisierung von Rezeptorkinasen der EGF- und TGF-Beta-Familie des kleinen Fuchsbandwurmes Echinococcus multilocularis T1 - Cloning and characterization of receptor kinases from the EGF- and TGF ß- family from the fox tapeworm Echinococcus multilocularis N2 - Rezeptorkinasen spielen eine wichtige Rolle in der Kommunikation von Zellen mit ihrer Umgebung und sind möglicherweise an hormonellen Kommunikations- Mechanismen zwischen parasitären Helminthen und ihren Säugetier- Wirten beteiligt. In dieser Arbeit wurden erstmals eine Rezeptor- Tyrosinkinase der EGF Familie, eine Serin- Threoninkinase der TGF- Familie sowie ein intrazellulärer Signaltransduktionsfaktor der Smad- Familie aus dem Fuchsbandwurm Echinococcus multilocularis charakterisiert. Mittels degenerativer PCR und 3´/ 5´-RACE Methoden konnten drei E. multilocularis cDNAs identifiziert und vollständig charakterisiert werden, welche für (i) eine Tyrosinkinase (EmRTK1) der EGF Rezeptor- Familie (5160 bp cDNA, 1564 Aminosäuren); (ii) eine Serin – Threoninkinase (EmRSK1) der TGF-Rezeptor - Familie (1892 bp cDNA, 543 Aminosäuren); und (iii) einen intrazellulären Signaltransduktor der Smad Familie (1530 bp cDNA, 318Aminosäuren) kodieren. Anhand von Sequenzvergleichen der abgeleiteten Aminosäuresequenzen zeigten alle drei Faktoren für die jeweilige Proteinfamilie typische Domänenstrukturen und hohe Homologien zu bereits bekannten Faktoren aus Säugern. Der zugehörige chromosomale Locus wurde in allen drei Fällen vollständig charakterisiert. Mit Hilfe von RT-PCR Analysen konnte die Expression von emrtk-1, emrsk-1 und emsmadA in den Larvenstadien Metacestode und Protoskolex während der Infektion des Zwischenwirtes nachgewiesen werden. Anhand dieser Daten kann vermutet werden, dass die beschriebenen Rezeptoren und EmSmadA eine wichtige Rolle in der Entwicklung des Parasiten spielen und möglicherweise an Mechanismen der Wirt- Parasit Interaktion während der alveolären Echinokokkose beteiligt sind. N2 - Receptor kinases play an important role in the communication of cells with their environment and could be involved in hormonal communication- mechanisms between parasitic helminths and their mammalian hosts. This work describes, for the first time, the identification and characterization of a receptor- tyrosinkinase of the EGF- receptor family, a serin- threoninkinase of the TGF-- receptor family, and an intracellular signal transduction factor of the Smad- Familie from the fox- tapeworm Echinococcus multilocularis. Using degenerative PCR and 3´/ 5´-RACE methods, E. multilocularis cDNAs coding for (i) a tyrosinkinase (EmRTK1) of the EGF family (5160 bp cDNA, 1564 amino acids); (ii) a serin – threoninkinase (EmRSK1) of the TGF- family (1829 bp cDNA, 543 amino acids); and (iii) an intracellular signal-transductor of the Smad family (1530 bp cDNA, 318 amino acids) could be identified and completely characterized. Furthermore, the chromosomal loci for all three factors were completely characterized. Structural analyses revealed that all three Echinococcus factors displayed domain structures which are characteristic of the respective protein families. Furthermore, on the amino acid sequence level, all three factors shared considerable homologies with corresponding host factors. Using RT-PCR analysis, emrtk-1, emrsk-1 and emsmadA were shown to be expressed in the larval stages metacestode and protoscolex during the infection of the intermediate host. According to this data, the described receptors and EmSmadA are likely to play an important role in the parasitic development and could be involved in mechanisms of the host- parasite interaction during alveolar echinococcosis. KW - Echinococcus multilocularis KW - Rezeptorkinasen KW - EGF-Rezeptor KW - TGFß-Rezeptor KW - Smad KW - Echinococcus multilocularis KW - rezeptorkinases KW - EGF-receptor KW - TGFß-receptor KW - Smad Y1 - 2002 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-5681 ER - TY - JOUR A1 - Ip, Chi Wang A1 - Kroner, Antje A1 - Groh, Janos A1 - Huber, Marianne A1 - Klein, Dennis A1 - Spahn, Irene A1 - Diem, Ricarda A1 - Williams, Sarah K. A1 - Nave, Klaus-Armin A1 - Edgar, Julia M. A1 - Martini, Rudolf T1 - Neuroinflammation by Cytotoxic T-Lymphocytes Impairs Retrograde Axonal Transport in an Oligodendrocyte Mutant Mouse JF - PLoS One N2 - Mice overexpressing proteolipid protein (PLP) develop a leukodystrophy-like disease involving cytotoxic, CD8+ T-lymphocytes. Here we show that these cytotoxic T-lymphocytes perturb retrograde axonal transport. Using fluorogold stereotactically injected into the colliculus superior, we found that PLP overexpression in oligodendrocytes led to significantly reduced retrograde axonal transport in retina ganglion cell axons. We also observed an accumulation of mitochondria in the juxtaparanodal axonal swellings, indicative for a disturbed axonal transport. PLP overexpression in the absence of T-lymphocytes rescued retrograde axonal transport defects and abolished axonal swellings. Bone marrow transfer from wildtype mice, but not from perforin- or granzyme B-deficient mutants, into lymphocyte-deficient PLP mutant mice led again to impaired axonal transport and the formation of axonal swellings, which are predominantly located at the juxtaparanodal region. This demonstrates that the adaptive immune system, including cytotoxic T-lymphocytes which release perforin and granzyme B, are necessary to perturb axonal integrity in the PLP-transgenic disease model. Based on our observations, so far not attended molecular and cellular players belonging to the immune system should be considered to understand pathogenesis in inherited myelin disorders with progressive axonal damage. KW - myelin KW - experimental autoimmune encephalomyelitis KW - degeneration KW - axonopathic changes KW - neural apoptosis KW - nervous system KW - motor function KW - proteolipid protein gene KW - retinal ganglion cells KW - granzyme B KW - multiple sclerosis Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-134982 VL - 7 IS - 8 ER - TY - JOUR A1 - Sadovnick, A. Dessa A1 - Traboulsee, Anthony L. A1 - Bernales, Cecily Q. A1 - Ross, Jay P. A1 - Forwell, Amanda L. A1 - Yee, Irene M. A1 - Guillot-Noel, Lena A1 - Fontaine, Bertrand A1 - Cournu-Rebeix, Isabelle A1 - Alcina, Antonio A1 - Fedetz, Maria A1 - Izquierdo, Guillermo A1 - Matesanz, Fuencisla A1 - Hilven, Kelly A1 - Dubois, Bénédicte A1 - Goris, An A1 - Astobiza, Ianire A1 - Alloza, Iraide A1 - Antigüedad, Alfredo A1 - Vandenbroeck, Koen A1 - Akkad, Denis A. A1 - Aktas, Orhan A1 - Blaschke, Paul A1 - Buttmann, Mathias A1 - Chan, Andrew A1 - Epplen, Joerg T. A1 - Gerdes, Lisa-Ann A1 - Kroner, Antje A1 - Kubisch, Christian A1 - Kümpfel, Tania A1 - Lohse, Peter A1 - Rieckmann, Peter A1 - Zettl, Uwe K. A1 - Zipp, Frauke A1 - Bertram, Lars A1 - Lill, Christina M. A1 - Fernandez, Oscar A1 - Urbaneja, Patricia A1 - Leyva, Laura A1 - Alvarez-Cermeño, Jose Carlos A1 - Arroyo, Rafael A1 - Garagorri, Aroa M. A1 - García-Martínez, Angel A1 - Villar, Luisa M. A1 - Urcelay, Elena A1 - Malhotra, Sunny A1 - Montalban, Xavier A1 - Comabella, Manuel A1 - Berger, Thomas A1 - Fazekas, Franz A1 - Reindl, Markus A1 - Schmied, Mascha C. A1 - Zimprich, Alexander A1 - Vilariño-Güell, Carles T1 - Analysis of Plasminogen Genetic Variants in Multiple Sclerosis Patients JF - G3: Genes Genomes Genetics N2 - Multiple sclerosis (MS) is a prevalent neurological disease of complex etiology. Here, we describe the characterization of a multi-incident MS family that nominated a rare missense variant (p.G420D) in plasminogen (PLG) as a putative genetic risk factor for MS. Genotyping of PLG p.G420D (rs139071351) in 2160 MS patients, and 886 controls from Canada, identified 10 additional probands, two sporadic patients and one control with the variant. Segregation in families harboring the rs139071351 variant, identified p.G420D in 26 out of 30 family members diagnosed with MS, 14 unaffected parents, and 12 out of 30 family members not diagnosed with disease. Despite considerably reduced penetrance, linkage analysis supports cosegregation of PLG p.G420D and disease. Genotyping of PLG p.G420D in 14446 patients, and 8797 controls from Canada, France, Spain, Germany, Belgium, and Austria failed to identify significant association with disease (P = 0.117), despite an overall higher prevalence in patients (OR = 1.32; 95% CI = 0.93–1.87). To assess whether additional rare variants have an effect on MS risk, we sequenced PLG in 293 probands, and genotyped all rare variants in cases and controls. This analysis identified nine rare missense variants, and although three of them were exclusively observed in MS patients, segregation does not support pathogenicity. PLG is a plausible biological candidate for MS owing to its involvement in immune system response, blood-brain barrier permeability, and myelin degradation. Moreover, components of its activation cascade have been shown to present increased activity or expression in MS patients compared to controls; further studies are needed to clarify whether PLG is involved in MS susceptibility. KW - multiple sclerosis KW - genetics KW - linkage KW - association KW - plasminogen Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-165405 VL - 6 IS - 7 ER -