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for Offspring Health (Diefenbach lab) Variant Surface Antigen Expression in chronic Plasmodium falciparum carriage (Portugal lab) Dissecting the Molecular Pathways of NK Cell Memory (Romagnani lab) Dissecting
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, a structured approach to work and safe working methods Good language skills in English and German. The following qualifications and skills are desirable: Experience in Python programming Experience
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) Dissecting the Molecular Pathways of NK Cell Memory (Romagnani lab) Dissecting the Molecular Pathways of NK Cell Clonality (Romagnani lab) Variable allele usage regulates inflammation (Weiss lab) The IMPRS-IDI
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applications from individuals with solid expertise in molecular cell biology. Prior experience with lipid biology is an advantage but not a prerequisite. The successful candidate will have good communication and
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culture and cell manipulation Fluency in English is required. Knowledge of German is not required Our Offer: Scientifically stimulating environment with excellent facilities and vibrant chromatin community
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and histopathological evaluation Culture of cell lines and human or murine primary cells. Excellent communication skills in English; proficiency in German desirable but not required Ability to work
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a joint German-Australian research project aiming to develop a modular platform to convert hydrogen, syngas, and biogas into single-cell protein - a sustainable, circular alternative to conventional
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communities (incl. metaproteomics), host cells and their signal transduction under various perturbations. The specific tasks will include: Studying the available literature in the field and formulating own
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, and regulate plasticity. We use cutting-edge methods (multi-omics, single cell, live cell imaging, modelling, chromatin biochemistry as well as various developmental, stem cell, and cell biology systems
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within the open call on “Molecular Biomedicine & Ageing”. As an IPP PhD student, you will join a community of exceptional scientists working on diverse topics ranging from how organisms age or how our DNA