TY - JOUR A1 - Hofmann, Lukas A1 - Karl, Franziska A1 - Sommer, Claudia A1 - Üçeyler, Nurcan T1 - Affective and cognitive behavior in the alpha-galactosidase A deficient mouse model of Fabry disease JF - PLoS ONE N2 - Fabry disease is an X-linked inherited lysosomal storage disorder with intracellular accumulation of globotriaosylceramide (Gb3) due to α-galactosidase A (α-Gal A) deficiency. Fabry patients frequently report of anxiety, depression, and impaired cognitive function. We characterized affective and cognitive phenotype of male mice with α-Gal A deficiency (Fabry KO) and compared results with those of age-matched male wildtype (WT) littermates. Young (3 months) and old (≥ 18 months) mice were tested in the naïve state and after i.pl. injection of complete Freund`s adjuvant (CFA) as an inflammatory pain model. We used the elevated plus maze (EPM), the light-dark box (LDB) and the open field test (OF) to investigate anxiety-like behavior. The forced swim test (FST) and Morris water maze (MWM) were applied to assess depressive-like and learning behavior. The EPM test revealed no intergroup difference for anxiety-like behavior in naïve young and old Fabry KO mice compared to WT littermates, except for longer time spent in open arms of the EPM for young WT mice compared to young Fabry KO mice (p<0.05). After CFA injection, young Fabry KO mice showed increased anxiety-like behavior compared to young WT littermates (p<0.05) and naïve young Fabry KO mice (p<0.05) in the EPM as reflected by shorter time spent in EPM open arms. There were no relevant differences in the LDB and the OF test, except for longer time spent in the center zone of the OF by young WT mice compared to young Fabry KO mice (p<0.05). Complementary to this, depression-like and learning behavior were not different between genotypes and age-groups, except for the expectedly lower memory performance in older age-groups compared to young mice. Our results indicate that genetic influences on affective and cognitive symptoms in FD may be of subordinate relevance, drawing attention to potential influences of environmental and epigenetic factors. KW - cognitive impairment KW - mouse models KW - depression KW - swimming KW - learning KW - Fabry disease KW - genetics Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-170745 VL - 12 IS - 6 ER - TY - JOUR A1 - Karl, Franziska A1 - Grießhammer, Anne A1 - Üçeyler, Nurcan A1 - Sommer, Claudia T1 - Differential Impact of miR-21 on Pain and Associated Affective and Cognitive Behavior after Spared Nerve Injury in B7-H1 ko Mouse JF - Frontiers in Molecular Neuroscience N2 - MicroRNAs (miRNAs) are increasingly recognized as regulators of immune and neuronal gene expression and are potential master switches in neuropathic pain pathophysiology. miR-21 is a promising candidate that may link the immune and the pain system. To investigate the pathophysiological role of miR-21 in neuropathic pain, we assessed mice deficient of B7 homolog 1 (B7-H1), a major inhibitor of inflammatory responses. In previous studies, an upregulation of miR-21 had been shown in mouse lymphocytes. Young (8 weeks), middle-aged (6 months), and old (12 months) B7-H1 ko mice and wildtype littermates (WT) received a spared nerve injury (SNI). We assessed thermal withdrawal latencies and mechanical withdrawal thresholds. Further, we performed tests for anxiety-like and cognitive behavior. Quantitative real time PCR was used to determine miR-21 relative expression in peripheral nerves, and dorsal root ganglia (DRG) at distinct time points after SNI. We found mechanical hyposensitivity with increasing age of naïve B7-H1 ko mice. Young and middle-aged B7-H1 ko mice were more sensitive to mechanical stimuli compared to WT mice (young: p < 0.01, middle-aged: p < 0.05). Both genotypes developed mechanical and heat hypersensitivity (p < 0.05) after SNI, without intergroup differences. No relevant differences were found after SNI in three tests for anxiety like behavior in B7-H1 ko and WT mice. Also, SNI had no effect on cognition. B7-H1 ko and WT mice showed a higher miR-21 expression (p < 0.05) and invasion of macrophages and T cells in the injured nerve 7 days after SNI without intergroup differences. Our study reveals that increased miR-21 expression in peripheral nerves after SNI is associated with reduced mechanical and heat withdrawal thresholds. These results point to a role of miR-21 in the pathophysiology of neuropathic pain, while affective behavior and cognition seem to be spared. Contrary to expectations, B7-H1 ko mice did not show higher miR-21 expression than WT mice, thus, a B7-H1 knockout may be of limited relevance for the study of miR-21 related pain. KW - B7-H1 KW - PD-L1 KW - immune system KW - neuropathic pain KW - SNI KW - miRNA KW - miR-21 Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-170722 VL - 10 IS - 219 ER - TY - JOUR A1 - Lüningschrör, Patrick A1 - Binotti, Beyenech A1 - Dombert, Benjamin A1 - Heimann, Peter A1 - Perez-Lara, Angel A1 - Slotta, Carsten A1 - Thau-Habermann, Nadine A1 - von Collenberg, Cora R. A1 - Karl, Franziska A1 - Damme, Markus A1 - Horowitz, Arie A1 - Maystadt, Isabelle A1 - Füchtbauer, Annette A1 - Füchtbauer, Ernst-Martin A1 - Jablonka, Sibylle A1 - Blum, Robert A1 - Üçeyler, Nurcan A1 - Petri, Susanne A1 - Kaltschmidt, Barbara A1 - Jahn, Reinhard A1 - Kaltschmidt, Christian A1 - Sendtner, Michael T1 - Plekhg5-regulated autophagy of synaptic vesicles reveals a pathogenic mechanism in motoneuron disease JF - Nature Communications N2 - Autophagy-mediated degradation of synaptic components maintains synaptic homeostasis but also constitutes a mechanism of neurodegeneration. It is unclear how autophagy of synaptic vesicles and components of presynaptic active zones is regulated. Here, we show that Pleckstrin homology containing family member 5 (Plekhg5) modulates autophagy of synaptic vesicles in axon terminals of motoneurons via its function as a guanine exchange factor for Rab26, a small GTPase that specifically directs synaptic vesicles to preautophagosomal structures. Plekhg5 gene inactivation in mice results in a late-onset motoneuron disease, characterized by degeneration of axon terminals. Plekhg5-depleted cultured motoneurons show defective axon growth and impaired autophagy of synaptic vesicles, which can be rescued by constitutively active Rab26. These findings define a mechanism for regulating autophagy in neurons that specifically targets synaptic vesicles. Disruption of this mechanism may contribute to the pathophysiology of several forms of motoneuron disease. KW - autophagy KW - synaptic vesicles KW - Pleckstrin homology containing family member 5 (Plekhg5) KW - regulation KW - motoneuron disease Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-170048 VL - 8 IS - 678 ER - TY - THES A1 - Karl, Franziska T1 - The role of miR-21 in the pathophysiology of neuropathic pain using the model of B7-H1 knockout mice T1 - Die Rolle von miR-21 in der Pathophysiologie von neuropathischem Schmerz am Model der B7-H1 defizienten Maus N2 - The impact of microRNA (miRNA) as key players in the regulation of immune and neuronal gene expression and their role as master switches in the pathophysiology of neuropathic pain is increasingly recognized. miR-21 is a promising candidate that could be linked to the immune and the nociceptive system. To further investigate the pathophysiological role of miR-21 in neuropathic pain, we assesed mice deficient of B7 homolog 1 (B7-H1 ko), a protein with suppressive effect on inflammatory responses. B7-H1 ko mice and wildtype littermates (WT) of three different age-groups, young (8 weeks), middle-aged (6 months), and old (12 months) received a spared nerve injury (SNI). Thermal withdrawal latencies and mechanical withdrawal thresholds were determined. Further, we investigated anxiety-, depression-like and cognitive behavior. Quantitative real time PCR was used to determine miR-21 relative expression in peripheral nerves, dorsal root ganglia and white blood cells (WBC) at distinct time points after SNI. Naïve B7-H1 ko mice showed mechanical hyposensitivity with increasing age. Young and middle-aged B7-H1 ko mice displayed lower mechanical withdrawal thresholds compared to WT mice. From day three after SNI both genotypes developed mechanical and heat hypersensitivity, without intergroup differences. As supported by the results of three behavioral tests, no relevant differences were found for anxiety-like behavior after SNI in B7-H1 ko and WT mice. Also, there was no indication of depression-like behavior after SNI or any effect of SNI on cognition in both genotypes. The injured nerves of B7-H1 ko and WT mice showed higher miR-21 expression and invasion of macrophages and T cells 7 days after SNI without intergroup differences. Perineurial miR-21 inhibitor injection reversed SNI-induced mechanical and heat hypersensitivity in old B7-H1 ko and WT mice. This study reveals that reduced mechanical thresholds and heat withdrawal latencies are associated with miR-21 induction in the tibial and common peroneal nerve after SNI, which can be reversed by perineurial injection of a miR-21 inhibitor. Contrary to expectations, miR-21 expression levels were not higher in B7-H1 ko compared to WT mice. Thus, the B7-H1 ko mouse may be of minor importance for the study of miR-21 related pain. However, these results spot the contribution of miR-21 in the pathophysiology of neuropathic pain and emphasize the crucial role of miRNA in the regulation of neuronal and immune circuits that contribute to neuropathic pain. N2 - Die Beteiligung von microRNA (miRNA) an der Genregulation immunologischer und neuronaler Prozesse und deren Rolle als Schlüsselelement in der Pathophysiologie von neuropathischem Schmerz gewinnt zunehmend an Bedeutung. miR-21 ist ein vielversprechender Kandidat, der sowohl das Immunsystem, als auch das nozizeptive System beeinflusst. Um die pathophysiologische Rolle von miR-21 bei neuropathischem Schmerz besser zu verstehen wurden Mäuse mit B7 homolog 1 Defizienz (B7-H1 ko), einem immunsupprimierendem Protein, untersucht. Eine frühere Studie zeigte eine Hochregulierung von miR-21 in murinen Lymphozyten. Junge (8 Wochen), mittelalte (6 Monate) und alte (12 Monate) B7-H1 ko Mäuse und Wildtypwurfgeschwister (WT) erhielten eine spared nerve injury (SNI) als neuropathischem Schmerzmodell. Es wurden thermische Rückzugslatenzen und mechanische Rückzugsschwellen bestimmt. Des weiteren wurde sowohl das Angstverhalten, das depressive Verhalten, als auch das kognitive Verhalten untersucht. Um die relative Expression von miR-21 in den peripheren Nerven, den Spinalganglien und in den weißen Blutzellen zu verschiedenen Zeitpunkten zu bestimmen, wurde die quantitative real time PCR angewandt. Naive B7-H1 ko Mäuse zeigten mit zunehmendem Alter eine mechanische Hyposensitivität. Bereits 3 Tage nach SNI entwickelten beide Genotypen eine Überempfindlichkeit gegenüber Hitze und mechanischer Stimulation. In drei durchgeführten Verhaltenstests konnten keine relevanten Unterschiede im Angstverhalten nach SNI von B7-H1 ko und WT Mäusen festgestellt werden. Bei beiden Genotypen gab es weder Hinweise auf depressives Verhalten nach SNI, noch wurde das kognitive Verhalten durch SNI beeinträchtigt. Die verletzen Nerven der B7-H1 ko und WT Mäuse zeigten 7 Tage nach SNI eine höhere miR-21 Expression und eine Invasion durch Makrophagen und T-Zellen ohne Gruppenunterschiede. Die perineurale Injektion eines miR-21 Inhibitors konnte die durch SNI induzierte mechanische und thermische Hypersensitivität lindern. Diese Studie zeigt, dass der Anstieg von miR-21 im N. tibialis und N. peroneus communis mit reduzierten Rückzugsschwellen gegen mechanische Reize und verkürzten Wegzugslatenzen bei Hitzestimulation einhergeht, welche durch perineurale Injektion eines miR-21 Inhibitors verringert werden können. Entgegen der Erwartungen zeigten B7-H1 ko Mäuse im Vergleich zu WT Mäusen keine erhöhte miR-21 Expression und sind daher möglicherweise von geringer Bedeutung für die Untersuchung von miR-21 assoziiertem Schmerz. Jedoch bekräftigen diese Ergebnisse eine Beteiligung von miR-21 an der Pathophysiologie von neuropathischem Schmerz und bestätigen die wichtige Rolle von miRNA bei der Regulation von neuronalen und immunologischen Prozessen, die zu neuropathischem Schmerz beitragen. KW - neuropathic pain KW - inflammation KW - B7-H1 KW - immune system KW - neuropathic pain KW - miRNA KW - miR-21 Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-156004 ER -