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This is the application guidelines of One Assistant Professor in Laboratory of Animal Cell Regulation, Department of Animal Resource Sciences, Graduate School of Agricultural and Life Sciences
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of the findings in model organisms to humans; 3) to generate primate models for key gene functions and intractable diseases; 4) to reconstitute key human cell lineages and tissues in vitro and validate
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and description of the project Research to contribute to the transition from fossil fuels to fuels derived from renewable energy sources and the realization of a low-carbon society New research
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, fluorescence spectroscopy, and cell imaging. The hired Assistant Professor will conduct research and education activities in close collaboration with Prof. Robert E. Campbell. [Work content and job description
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transporters that create asymmetric distribution of substrate/information across cell membranes. [Work content and job description] General educational and research duties, including teaching and practical
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mouse neural stem cells, including cell culture experiments, animal experiments using mice, and molecular biology experiments. * Assigned department Existing departments [Work location] * Address 606-8507
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organisms throughout their lifespan, from embryonic development and birth to aging and death. Our interdisciplinary approaches to address this overarching theme include cell biology, molecular biology
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description] In our laboratory, we study the regulatory control of neuron differentiation. Neurons form among the most complex and diverse structures of any cell type, and this has critical relevance due to its
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models for key gene functions and intractable diseases; 4) to reconstitute key human cell lineages and tissues in vitro and validate their properties based on integrative information; and 5) to contribute
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cellular functions. In addition to traditional biochemical and cell biological approaches, the lab employs a unique strategy utilizing newly developed technologies to analyze membrane changes in vivo. In