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into the overall study conducted by the Rubiacum team (chronology of development phases of the town wall; graphical reconstruction of structures and their functioning) Related activities : Archival research (on site
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purifying proteins from bacterial expression systems. -Participating in quantitative interactomics experiments and data analysis. -Development of cellular assays to validate interactions Required
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collagen secretion in scarring and fibrotic diseases. The postdoctoral researcher will: • Contribute to the design and conceptual development of the project • Design and perform experiments addressing
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divergent evolution of mating cues and preferences, because of the costs incurred by heterospecific reproductive interactions. In butterflies sharing similar coloration, significant heterospecific courtship
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in the development of glioblastomas. The postdoc will use in vitro approaches to culture patient-derived cells with oligodendrocytes and will also be required to carry out or assist with in vivo
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contribute to the development of fundamental aspects of computer science (models, languages, methodologies, algorithms) and to address conceptual, technological, and societal challenges. The LIG 22 research
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combine density functional theory (DFT), molecular simulations, and machine-learning force field (ML-FF) development to uncover the factors controlling NHC–surface interactions and to model realistic
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these interactions and their evolution are studied, with a few privileged fields that are particularly sensitive to these interactions, whether local or global. Each of these socio-ecosystems is used as a laboratory
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potential therapeutic targets and biomarkers. An ambitious technological development in the team focuses on single cell proteomics analysis to access tumor heterogeneity in patient-derived organoids and
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world of research and development and for the general public. Possible extension of the contract for an additional 12 months. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UPR2940-ELOBER-148