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Köhrer, K.

Publications and source records attributed to Köhrer, K..

3 recordsLinked to original sources

The transcription factor reservoir and chromatin landscape in activated plasmacytoid dendritic cells

Transcription factors (TFs) control gene expression by direct binding to regulatory regions of target genes but also by impacting chromatin landscapes and thereby modulating DNA accessibility for other TFs. To date, the global TF reservoir in plasmacytoid dendritic cells (pDCs), a cell type with the unique capacity to produce unmatched amounts of type I interferons, has not been fully characterized. To fill this gap, we have performed a comprehensive analysis in naive and TLR9-activated pDCs in a time course study covering early timepoints after stimulation (2h, 6h, 12h) integrating gene expression (RNA-Seq), chromatin landscape (ATAC-Seq) and Gene Ontology studies. We found that 70% of all described TFs are expressed in pDCs for at least one stimulation time point and that activation predominantly "turned on" the chromatin regions associated with TF genes. We hereby define the complete set of TLR9-regulated TFs in pDCs. Further, this study identifies the AP-1 family of TFs as potentially important but so far less well characterized regulators of pDC function.

molecular biology

Single-cell transcriptomics defines heterogeneity of epicardial cells and fibroblasts within the infarcted heart

In the adult heart, the epicardium becomes activated after injury, contributing to cardiac healing by secretion of paracrine factors. Here we analyzed by single-cell RNA sequencing combined with RNA in situ hybridization and lineage tracing of WT1+ cells the cellular composition, location, and hierarchy of epicardial stromal cells (EpiSC) in comparison to activated myocardial fibroblasts/stromal cells in infarcted mouse hearts. We identified 11 transcriptionally distinct EpiSC populations, that can be classified in three groups each containing a cluster of proliferating cells. Two groups expressed cardiac specification makers and sarcomeric proteins suggestive of cardiomyogenic potential. Transcripts of HIF-1 and HIF-responsive genes were enriched in EpiSC consistent with an epicardial hypoxic niche. Expression of paracrine factors was not limited to WT1+ cells but was a general feature of activated cardiac stromal cells. Our findings provide the cellular framework by which myocardial ischemia may trigger in EpiSC the formation of cardioprotective/regenerative responses.

cell biology

Lymphotoxin β receptor: A crucial role in innate and adaptive immune responses against Toxoplasma gondii

The LT{beta}R plays an essential role in the initiation of immune responses to intracellular pathogens. In mice, the LT{beta}R is crucial for surviving acute toxoplasmosis, however, up to now a functional analysis is largely incomplete. Here, we demonstrate that the LT{beta}R is a key regulator required for the intricate balance of adaptive immune responses. T. gondii infected LT{beta}R-/- mice show globally altered IFN{gamma} regulation, reduced IFN{gamma}-controlled host effector molecule expression, impaired T cell functionality and an absent anti-parasite specific IgG response resulting in a severe loss of immune control of the parasites. Reconstitution of LT{beta}R-/- mice with toxoplasma immune serum significantly prolongs the survival following T. gondii infection. Notably, analysis of RNAseq data clearly indicates a specific effect of T. gondii infection on the B cell response and isotype switching. This study unfolds the decisive role of the LT{beta}R in cytokine regulation and adaptive immune responses to control T. gondii.

immunology