Refine
Has Fulltext
- yes (5)
Is part of the Bibliography
- yes (5)
Document Type
- Journal article (4)
- Doctoral Thesis (1)
Keywords
- Allergie (1)
- Allergy (1)
- Antisense RNA (1)
- Asthma (1)
- Atopic Dermatitis (1)
- Atopische Dermatitis (1)
- BMI (1)
- Bradyrhizobium (1)
- Genome re-annotation (1)
- Immunologie (1)
Institute
- Theodor-Boveri-Institut für Biowissenschaften (2)
- Institut für Molekulare Infektionsbiologie (1)
- Institut für Virologie und Immunbiologie (1)
- Institut für diagnostische und interventionelle Neuroradiologie (ehem. Abteilung für Neuroradiologie) (1)
- Klinik und Poliklinik für Dermatologie, Venerologie und Allergologie (1)
- Klinik und Poliklinik für Kinder- und Jugendpsychiatrie, Psychosomatik und Psychotherapie (1)
- Medizinische Klinik und Poliklinik II (1)
- Pathologisches Institut (1)
IL-4 und IL-13 sind wichtige Faktoren bei der Entwicklung allergischer Erkrankungen. In dieser Arbeit wird die Rolle von IL-4 und IL-13 in einem Maus-Modell für allergisches Asthma während der allergischen Sensibilisierung und in einer etablierten asthmatischen Erkrankung untersucht. Weiterhin wird die Rolle von IL-4 und IL-13 in frühen Stadien der atopischen Dermatitis in einem Maus-Modell betrachtet. In einem Maus-Modell für allergisches Asthma mit anhaltender IgE-Synthese und einer persistierenden allergischen Atemwegspathologie konnte gezeigt werden, dass die Inhibition des IL-4/IL-13 Systems während der allergischen Sensibilisierung zu einer dosisabhängigen Reduktion der allergen-spezifischen IgE-Titer, zur Inhibition der Atemwegseosinophilie, zur Reduktion der IL-5-Spiegel in der BAL und zu einer gesenkten Anzahl von IL-4 sezernierenden CD4+ T-Zellen. Weiterhin konnte durch die Inhibition des IL-4/IL-13 Systems die Becherzellmetaplasie signifikant gesenkt werden. Die Inhibition des IL-4/IL-13 Systems nach der Entwicklung der allergischen Atemwegspathologie führte hingegen nicht zu einer signifikanten Reduktion der gemessenen Allergie-Parameter. Daraus lässt sich schließen, dass IL-4 und IL-13 nur eine untergeordnete Rolle in einer etablierten Allergie spielt. Diese Ergebnisse sind insbesondere wichtig, wenn man über das Verwendungspotential eines IL-4/IL-13-Inhibitors in der Allergie-Therapie bei asthmatischen Patienten spekuliert. Weiterhin konnte in dieser Arbeit gezeigt werden, dass die NC/Nga-Maus ein Modell für die humane atopische Dermatitis darstellt. NC/Nga Mäuse, die unter konventionellen Bedingungen gehalten wurden, entwickeln makroskopische und histologische Hautpathologien, die der humanen atopischen Dermatitis sehr ähneln. Weiterhin entwickeln unter konventionellen Bedingungen gehaltenen NC/Nga Mäuse hohe IgE-Titer im Serum, die mit einer erhöhten Produktion an Th2-Zytokinen verbunden war. Die Inhibition des IL-4/IL-13-Systems führte in diesem Modell jedoch nicht zu einer Reduktion von Symptomen und Pathologien der humanen atopischen Dermatitis. Deswegen kann man spekulieren, dass die Inhibition des IL-4/IL-13-Systems zu einem zu späten Zeitpunkt erfolgte. Des Weiteren kann eine nicht-standardisierte Sensibilisierung bei Mäusen, die in einer konventionellen Tierhaltung gehalten werden, zu einem sehr unterschiedlichen Ausbruch der Dermatitis führen. Deshalb werden weitere Tierversuche mit einer höheren Anzahl von Tieren, die zwischen den Würfen randomisiert werden, nötig sein, um die Rolle von IL-4 und IL-13 in der atopischen Dermatitis zu klären.
We aimed to compare the clinical data at first presentation to inpatient treatment of children (<14 years) vs. adolescents (≥14 years) with anorexia nervosa (AN), focusing on duration of illness before hospital admission and body mass index (BMI) at admission and discharge, proven predictors of the outcomes of adolescent AN. Clinical data at first admission and at discharge in 289 inpatients with AN (children: n = 72; adolescents: n = 217) from a German multicenter, web-based registry for consecutively enrolled patients with childhood and adolescent AN were analyzed. Inclusion criteria were a maximum age of 18 years, first inpatient treatment due to AN, and a BMI <10th BMI percentile at admission. Compared to adolescents, children with AN had a shorter duration of illness before admission (median: 6.0 months vs. 8.0 months, p = 0.004) and higher BMI percentiles at admission (median: 0.7 vs. 0.2, p = 0.004) as well as at discharge (median: 19.3 vs. 15.1, p = 0.011). Thus, in our study, children with AN exhibited clinical characteristics that have been associated with better outcomes, including higher admission and discharge BMI percentile. Future studies should examine whether these factors are actually associated with positive long-term outcomes in children.
Cytotoxic T lymphocytes are effector CD8\(^{+}\) T cells that eradicate infected and malignant cells. Here we show that the transcription factor NFATc1 controls the cytotoxicity of mouse cytotoxic T lymphocytes. Activation of Nfatc1\(^{-/-}\) cytotoxic T lymphocytes showed a defective cytoskeleton organization and recruitment of cytosolic organelles to immunological synapses. These cells have reduced cytotoxicity against tumor cells, and mice with NFATc1-deficient T cells are defective in controlling Listeria infection. Transcriptome analysis shows diminished RNA levels of numerous genes in Nfatc1\(^{-/-}\) CD8\(^{+}\) T cells, including Tbx21, Gzmb and genes encoding cytokines and chemokines, and genes controlling glycolysis. Nfatc1\(^{-/-}\), but not Nfatc2\(^{-/-}\) CD8\(^{+}\) T cells have an impaired metabolic switch to glycolysis, which can be restored by IL-2. Genome-wide ChIP-seq shows that NFATc1 binds many genes that control cytotoxic T lymphocyte activity. Together these data indicate that NFATc1 is an important regulator of cytotoxic T lymphocyte effector functions.
Background
Differential RNA-sequencing (dRNA-seq) is indispensable for determination of primary transcriptomes. However, using dRNA-seq data to map transcriptional start sites (TSSs) and promoters genome-wide is a bioinformatics challenge. We performed dRNA-seq of Bradyrhizobium japonicum USDA 110, the nitrogen-fixing symbiont of soybean, and developed algorithms to map TSSs and promoters.
Results
A specialized machine learning procedure for TSS recognition allowed us to map 15,923 TSSs: 14,360 in free-living bacteria, 4329 in symbiosis with soybean and 2766 in both conditions. Further, we provide proteomic evidence for 4090 proteins, among them 107 proteins corresponding to new genes and 178 proteins with N-termini different from the existing annotation (72 and 109 of them with TSS support, respectively). Guided by proteomics evidence, previously identified TSSs and TSSs experimentally validated here, we assign a score threshold to flag 14 % of the mapped TSSs as a class of lower confidence. However, this class of lower confidence contains valid TSSs of low-abundant transcripts. Moreover, we developed a de novo algorithm to identify promoter motifs upstream of mapped TSSs, which is publicly available, and found motifs mainly used in symbiosis (similar to RpoN-dependent promoters) or under both conditions (similar to RpoD-dependent promoters). Mapped TSSs and putative promoters, proteomic evidence and updated gene annotation were combined into an annotation file.
Conclusions
The genome-wide TSS and promoter maps along with the extended genome annotation of B. japonicum represent a valuable resource for future systems biology studies and for detailed analyses of individual non-coding transcripts and ORFs. Our data will also provide new insights into bacterial gene regulation during the agriculturally important symbiosis between rhizobia and legumes.
Diabetic neuropathy (DPN) is one of the most severe and yet most poorly understood complications of diabetes mellitus. In vivo imaging of dorsal root ganglia (DRG), a key structure for the understanding of DPN, has been restricted to animal studies. These have shown a correlation of decreased DRG volume with neuropathic symptom severity. Our objective was to investigate correlations of DRG morphology and signal characteristics at 3 Tesla (3T) magnetic resonance neurography (MRN) with clinical and serological data in diabetic patients with and without DPN. In this cross-sectional study, participants underwent 3T MRN of both L5 DRG using an isotropic 3D T2-weighted, fat-suppressed sequence with subsequent segmentation of DRG volume and analysis of normalized signal properties. Overall, 55 diabetes patients (66 ± 9 years; 32 men; 30 with DPN) took part in this study. DRG volume was smaller in patients with severe DPN when compared to patients with mild or moderate DPN (134.7 ± 21.86 vs 170.1 ± 49.22; p = 0.040). In DPN patients, DRG volume was negatively correlated with the neuropathy disability score (r = −0.43; 95%CI = −0.66 to −0.14; p = 0.02), a measure of neuropathy severity. DRG volume showed negative correlations with triglycerides (r = −0.40; 95%CI = −0.57 to −0.19; p = 0.006), and LDL cholesterol (r = −0.33; 95%CI = −0.51 to −0.11; p = 0.04). There was a strong positive correlation of normalized MR signal intensity (SI) with the neuropathy symptom score in the subgroup of patients with painful DPN (r = 0.80; 95%CI = 0.46 to 0.93; p = 0.005). DRG SI was positively correlated with HbA1c levels (r = 0.30; 95%CI = 0.09 to 0.50; p = 0.03) and the triglyceride/HDL ratio (r = 0.40; 95%CI = 0.19 to 0.57; p = 0.007). In this first in vivo study, we found DRG morphological degeneration and signal increase in correlation with neuropathy severity. This elucidates the potential importance of MR-based DRG assessments in studying structural and functional changes in DPN.