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. The project focuses on developing and applying single-cell multi-omics approaches to uncover regulators acting upstream of known epigenetic writers and erasers during embryonic development. Expected start date
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the mechanisms underlying durable viral control, with particular emphasis on antibody-mediated enhancement of T-cell immunity, Fc-dependent immune activation, and host-pathogen interactions. Beyond HIV, the group
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methods will relate regional imaging and binding measures to cell-specific gene expression and intracellular signalling. Experience with stress-related behavioural models, particularly chronic social defeat
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-resolution microscopy Genome editing (e.g., CRISPR-based approaches) Quantitative and live-cell imaging Functional genomics The project is embedded in an interdisciplinary research environment combining
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Position as postdoc in biochemistry and structural biology of DNA repair The Mechanisms of Chromatin Repair Lab at the Department of Molecular Biology and Genetics, Aarhus University, invites
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about the faculty here. About the research project The successful candidate will join a dynamic research group studying the role of receptor-mediated endocytosis in kidney proximal tubule cells and its
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transporters. These studies involve the identification and characterization of channels and transporters in T and B lymphocytes, investigation of the molecular mechanisms by which these ICTs control cell
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plant–microbe associations and harness their potential for sustainable food production. Our focus is on uncovering the molecular mechanisms by which plants and microbes interact—ranging from early
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genome maintenance and cellular responses to DNA damage. The successful candidate will combine proteomics, molecular biology and mechanistic cell biology approaches to uncover new regulatory mechanisms
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, execute, and analyze PK, biodistribution, and efficacy studies in rodent models. Establishing in vitro screening models to assess the delivery efficiency of siRNA and ASOs. Investigating the mechanisms