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Project description We are a highly motivated international team of researchers at the Molecular Neurogenomics group (Jordanova Lab) and the Computational Neurobiology group (Malysheva Lab
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ERC-funded PhD position in molecular genetics: Unravelling the eukaryotic post-transcriptional regulatory code Job description Are you interested in unraveling a central, yet understudied mechanism
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ERC-funded postdoc position in molecular genetics: Unravelling the eukaryotic post-transcriptional regulatory code Job description Are you interested in unraveling a central, yet understudied
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Postdoctoral position available to study human-specific molecular mechanisms of neuronal development
skills in English. Experience in molecular biology, metabolism or cell biology is a plus. We offer A versatile and challenging academic position with very diverse contacts in a world-class research
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biology and evolutionary genomics. Current research topics include testing a novel experimental setup to unravel the molecular wiring of plant phenotypes under field conditions, studying dosage balance
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studies, including the culturing of challenging cells such as stem cells. Execute a variety of wet lab experiments, including molecular biology techniques like PCR, qPCR, and Western blotting. Process mouse
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and plant systems biology. Current research topics include testing a novel experimental setup to unravel the molecular wiring of plant phenotypes under field conditions, studying dosage balance
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of challenging cells such as stem cells. Execute a variety of wet lab experiments, including molecular biology techniques like PCR, qPCR, and Western blotting. Process mouse tissues (e.g., liver digestion and cell
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), which brings together more than 180 research staffs working in the field of biochemistry, molecular and cell biology. Chaumont’s team is fascinated by the molecular and cellular mechanisms regulating
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single-cell and spatial multi-omics datasets. The primary focus of this role is to delve deeper into the molecular mechanisms driving intra-tumor heterogeneity, plasticity, and therapy resistance