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trajectories of exonic enhancers, across vertebrate species. It aims to clarify how dual coding and regulatory constraints jointly shape the evolution of exonic enhancer sequences. The PhD student will integrate
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involving three research units (ICMR and ECSN in France, and NPMC in Athens), with field sampling campaigns in France and Greece. **Resources available (equipment, IT, etc.):** Workstation, specialized
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myosin isoforms. In particular, myosin 18 emerges as a key regulator of muscle myosin 2 and is involved in various pathologies. Surprisingly, myosin 18 has lost its ability to hydrolyze ATP and
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these types is primordial: we must ensure the ciphers in use are resistant to state-of-the-art attack techniques to confidently continue using it, while before adopting a new cipher we must check its resistance
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collaboration to support these analyses. The neutrino is the only elementary particle that could be identical to its own antiparticle. This property could be revealed by the discovery of an extremely rare
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(LPS) is a joint research unit (UMR 8502) of Université Paris-Saclay and the CNRS. It is affiliated with the CNRS Institute of Physics and the 28th section of the National Council of Universities (CNU
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Alpes. The laboratory is related to the CNRS Physique. It is located in Grenoble, in the heart of a unique scientific, industrial and cultural environment. It is one of the largest French national
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Research Unit jointly operated by the CNRS and the University of Lille. Founded in 1998, it builds on more than sixty years of scientific excellence in Lille in the study of light–matter interactions. Its
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of highly reactive radicals near the substrate where it should add. Most often, fragile molecules with labile leaving groups are chosen, facilitating local generation of radicals as response to external
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. The institute has a favorable location and a friendly atmosfere. It is well-served by public transportation and offers diverse possibilities of university catering. Title: Mechanisms underlying the interplay