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cellular signaling remains a key challenge in biology and is at the heart of the project. The PhD student will be in charge of the molecular modelling aspects of the multi-scale approaches undertaken by
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wide range of scientific skills, with each supervisor covering a specific area of expertise (DFT and Thermodynamics, Kinetics, Molecular Dynamics and ML potentials). The candiadte will contribute to a
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supervised by Nadine Laguette (Institute of Molecular Genetics of Montpellier – IGMM, Montpellier). The Institute of Molecular Genetics of Montpellier (IGMM) is a joint research unit of the CNRS and the
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(mathematical modeling in ecology, LOMIC, Banyuls-sur-Mer) and Prof. Christoph Grunau (Host-Pathogen-Environment Interactions, IHPE, Perpignan). Both laboratories are equipped with all the necessary computational
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potential. The aim of the PhD project is to discover new microproteins involved in the regulation of animal reproduction and fertility, using Drosophila as a model system. By integrating genetic, proteomic
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(with openness to learning others): Computational protein design or molecular modeling Protein biochemistry / structural biology Cell biology and receptor signaling Good communication skills in English
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will join the Molecular Phylogeny and Evolution team and will work directly with the members of the FunAdapt project. The ISEM's Molecular Phylogeny and Evolution team offers a pleasant and dynamic
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exciton transport to the reaction center or to a donor-acceptor interface, respectively. Characterizing, modeling and improving exciton transport properties in molecular materials remain essential tasks in
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molecular mechanisms underlying chronic inflammation in ILDs, autoimmune diseases and related disorders. Investigate exposome contributions to diseases: particularly air pollutants and organic or mineral
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since its discovery 150 years ago, due to a lack of model species 2,3. The candidate will use a combination of genetic tools to identify the molecular machinery responsible for chromosome fragmentation in