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We are seeking applicants for postdoc positions in ‘Mammalian Nuclear RNA Production and Turnover Systems’ to join us at the Department of Molecular Biology and Genetics in the research team
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Electronics Next-generation Communications Advanced Mobility and Robotics Energy (Nuclear, Hydrogen, Batteries) Biotechnology and Health Sciences Quantum Science and Technology Aerospace and Advanced
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.), Physics I (particle, nuclear, astrophysics, etc.), Physics II ( condensed matter, etc.), Chemistry, Biology (cell biology, developmental biology, plant biology, structural biology, microbiology, imaging
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. Myriam Charpentier, you will explore the molecular mechanisms underlying nuclear calcium oscillation decoding and the enhancement of root legume endosymbiosis. The successful applicant will creatively
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led by Prof. Myriam Charpentier, you will explore the mechanisms underlying nuclear calcium oscillation decoding using bioinformatic and AI approaches. The successful applicant will creatively
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. Myriam Charpentier, you will explore the molecular mechanisms underlying nuclear calcium oscillation decoding and the enhancement of root legume endosymbiosis. The successful applicant will creatively
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to collaborate with others. - Experience in nanomedicine and/or nuclear imaging is highly desirable. Compensation The Mount Sinai Health System (MSHS) provides a salary range to comply with the New York City Law
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: (1) the chemical regulation of nuclear xenobiotic receptors, (2) the mechanism of selective modulation of highly homologous drug-metabolizing enzymes. We are taking a hypothesis-driven and technology
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Nature Careers | Vancouver South Shaughnessy NW Oakridge NE Kerrisdale SE Arbutus Ridge, British Columbia | Canada | 3 months ago
mitochondrial genetic and epigenetic changes, their interaction with nuclear genome, and mitochondrial dysfunction in chronic diseases and aging.The goal of our research is to identify diagnostic and prognostic
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regulation of nuclear xenobiotic receptors, (2) the mechanism of selective modulation of highly homologous drug-metabolizing enzymes. We are taking a hypothesis-driven and technology-enabled multidisciplinary