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at Human Technopole (HT), is searching for a postdoctoral fellow to investigate the molecular mechanisms of leukemogenesis in paediatric age. This project focuses on understanding the cellular and molecular
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Models”, led by Prof. Jonathan Brewer (Department of Biochemistry and Molecular Biology, SDU), Dr. Mike Barnkob and Prof. Torben Barington (Department of Clinical Immunology, Odense University Hospital
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Dr. Narendra Wajapeyee and Dr. Romi Gupta's laboratories at the Department of Biochemistry and Molecular Genetics and UAB O’Neal Comprehensive Cancer Center are seeing two highly motivated
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the gating mechanism of TZ in cellular models such as RPE1 or cultured dopaminergic neurons by immunofluorescence microscopy. You will also build and test TZ-derived molecular prosthetics with the aim
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immunity through detailed molecular characterization of these disease models. Joanna Rorbach’s lab: Our current research encompasses genetic, structural, and biochemical studies to understand the regulation
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uniquely conserved—TRIM in animals and polyD/E in eukaryotes—setting them apart from classical PQC mechanisms. We are exploring their molecular mechanisms, their roles in aging and neurodegenerative diseases
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harnessed for further engineering. The ideal candidate has led a molecular-level scientific research project and has technical expertise in CRISPR, gene transformation, or other genetic tools applied to one
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position in the fields of photoreceptors, molecular biology and neurobiology. The ideal candidate is expected to work both independently and as part of an interactive team. The full-time scholarship is for 1
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Postdoc position: mechanisms of autoimmunity & autoinflammation in inborn errors of immunity (m/f/d)
of the immune dysregulation and clinical translation. The Boztug lab is focusing on the discovery of inborn errors of immunity (IEI) and the dissection of their underlying molecular pathomechanisms. The ultimate
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the following responsibilities: Designing and performing experiments to study skin regeneration, inflammation, and fibrosis using human tissue samples and preclinical models. Applying advanced molecular and