Search bioRxiv⌕ Search

Biology subjects

Reiss, E.

Publications and source records attributed to Reiss, E..

2 recordsLinked to original sources

Leishmaniamajor co-opts IL-7 feedback in monocytes to suppress CD4⁺ T-cell immunity

During immune responses, pro-and anti-inflammatory mechanisms must be balanced to ensure pathogen clearance while limiting tissue damage. Monocyte-derived cells contribute to both processes, yet the underlying regulatory circuits remain incompletely defined. Here, we show that a subset of PDPN+IL-7R+ monocyte-derived cells that impair effector CD4 T cell-mediated control of intracellular pathogens, and thus perpetuate the infection. Fibroblast-derived IL-7 drives this immunosuppressive program, which is up-regulated in response to IFN{gamma}. We thus uncover a cytokine-dependent feedback circuit in which elevated IFN{gamma} induces IL-7 production by fibroblasts, licensing immunosuppressive monocyte-derived cells that restrain CD4 T cell responses. This mechanism links excessive inflammation to immune suppression at the expense of pathogen control. Targeting this feedback loop may enable therapeutic strategies that enhance antimicrobial immunity while preserving tissue integrity.

immunology↗

Evolutionary conserved and divergent responses to copper zinc superoxide dismutase inhibition in plants

Life evolved in the presence of reactive oxygen species (ROS) and was further challenged by two consecutive great oxidation events. Therefore, ROS are deeply intertwined into the physological, morphological and transcriptional responses of organisms. Copper zinc superoxide dismutases (CuZnSODs) evolved around the first great oxidation event and have next to their classical role in ROS detoxification also important roles in signaling and transcriptional regulation. Here we addressed the role of CuZnSODs in early land plant evolution. We show, that pharmaceutical inhibition of CuZnSODs with Lung Cancer Screen 1 (LCS-1) in different plant species, including Marchantia polymorpha and Physcomitrium patens, representing the evolutionary early stages of land plants, and Arabidopsis thaliana as a modern vascular plant, lead to impairment of development and growth. Interestingly, Marchantia only possesses the cytosolic CuZnSOD isoform, whereas Physcomitrium additionally contains a plastidial isoform and Arabidopsis contains next to that a third peroxisomal isoform. An RNA-seq analysis revealed that the inhibition of CuZnSODs provoked a similar core response in all plant species analyzed, while those that contain more isoforms showed an extended response. In addition, an untargeted metabolomics approach revealed a specific metabolic signature for each plant species. Through the above approach the oxidative stress provoked by LCS-1 in plants can be specified and we argue that CuZnSOD functions are evolutionary conserved and might be important for plant terrestrialization.

plant biology↗