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Max Planck Institute of Molecular Physiology, Dortmund | Dortmund, Nordrhein Westfalen | Germany | 21 days ago
, structural biology, biophysics, cell biology, chemical biology and synthetic biology? The International Max Planck Research School for Living Matter: from molecules to dynamics (IMPRS-LM) is a joint PhD
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molecular, cell biological, biochemical, physiological and genetic techniques and access to a broad range of techniques and facilities on the TUM-Weihenstephan campus and beyond. Please send a letter of
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advanced computational tools and single-cell multi-omics data (CITE-seq, proteomics, transcriptomics, methylation, metabolomics), we aim to: 1) Identify surface molecules specific to dormant leukemic stem
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, subcellular localization and even immunogenicity of RNA to modulate essential cell programs like cell proliferation, differentiation, and stress response. Pathological changes in the epitranscriptome are seen
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cancer cell plasticity in AML. Our overall goal is to pave the way for new cancer therapies. The aim of this PhD position is to perform and to functionally and molecularly characterize multiomics single
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of biochemistry, structural biology, biophysics, cell biology, chemical biology and synthetic biology? The International Max Planck Research School for Living Matter: from molecules to dynamics (IMPRS-LM) is a
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. Biomolecular condensates have emerged as a new paradigm to understand biological functions in living cells. Dresden has pioneered research in the field of biomolecular condensates and developed into its vibrant
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internalization into tumor cells, ADCs release their cytotoxic payload, causing targeted cancer cell death via DNA or microtubule disruption. Beyond their direct cytotoxic effects, emerging evidence shows that ADCs
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, Heidelberg and Mannheim, our scientists collaborate across disciplines to unravel the complexities of disease at the systems level – from molecules and cells to organs and entire organisms. Through strong
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at the interface between protein regulation and genome maintenance. In our research, we combine methods in genetics, molecular and cell biology with protein biochemistry and advanced genomics tools, using both