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subcellular localization or actin dynamics, the candidate will investigate the impact of mitochondrial activity and the actin network on germ granule functional organization. - Drosophila genetics - Molecular
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, protein and lipid chromatography (FPLC, HPTLC), various spectrophotometers (UV-visible, CD, fluorimeters), and computers for molecular dynamics simulation. The IPMC institute includes various state
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enzymes identified through experimental research. . • Establish and develop molecular dynamics protocols for the study of an enzyme family. • Establish and develop QM/MM methods for studying the reactivity
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in a rapidly developing field • Access to state-of-the-art equipment and radiation sources including synchrotron radiation facilities • A dynamic, diverse, and international research environment with
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field of molecular chemistry and hybrid functional materials. He/She will be involved in the design, experimental work and characterization of new molecular systems exhibiting tunable properties
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of Molecular and Cellular Biology (IBMC). In addition to the team leader, Dr. Christopher G. Mueller, the team includes a CNRS research director, Dr. Vincent Flacher, a senior lecturer, Dr. Benjamin Voisin, two
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fundamental in cell biology, complementing membrane-bound organelles in the organization of cellular functions. Biomolecular condensates are mesoscopic membrane-less organelles that allow the dynamic
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containment laboratory - Microscopy (RNA, proteins) - Classical molecular and cell biology techniques: cloning, Flow cytometry, cell culture, RT-qPCR, western blot. The applicant will benefit from a highly
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. The candidate will participate in field sampling, species identification, and laboratory cultivation of nematodes from extreme habitats. The candidate will also take part in molecular, genomic, and phylogenetic
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dynamic environment. The candidate will also benefit from the scientific environment (about 24 teams and about 500 people dedicated to cancer research) and technical platforms provided by the CRCL. Where