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of human diseases (e.g., Zhang et al., Nature Microbiology, 2025; Li et al., Nature Metabolism, 2024; Ni et al., Cell Metabolism, 2023; Leung et al., Science Translational Medicine, 2022; Seelbinder et al
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of metal ions and their influence on the action of antimicrobials, in particular antifungals. Project description: Our work focuses on studying the intersection of metal ions, catalysis, and metabolic
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Max Planck Institute of Molecular Cell Biology and Genetics, Dresden | Dresden, Sachsen | Germany | about 5 hours ago
screening for tissue-specific regulators of protein turnover Building single-cell assays of global or selective protein stability regulation Metabolic labeling and proteomics to map chemical protein
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candidate will join an exciting research program exploring a newly emerging paradigm in immunology: mitochondrial transfer and synthetic organelle therapy. Using newly developed genetically engineered mouse
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investigates how cells control their metabolism on a large scale. With a focus on yeast, we use functional genomics and develop advanced mass spectrometry to study how genes and metabolic pathways interact. Our
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of human diseases (e.g., Zhang et al., Nature Microbiology, 2025; Li et al., Nature Metabolism, 2024; Ni et al., Cell Metabolism, 2023; Leung et al., Science Translational Medicine, 2022; Seelbinder et al
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the central hypothesis of these infections causing general stress responses and behavioural changes, which can be assessed on metabolic level or by video observation and artificial intelligence analysis
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to assess functional, metabolic, and structural parameters of both brain and heart. Innovative imaging strategies will be implemented to enable simultaneous or temporally coordinated multi-organ measurements
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, metabolic profiling or immunohistochemistry, and experience with in vivo inter-organ communication models. Our environment As part of the SyNergy Cluster of Excellence, member of large collaborative research