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sodium-responsive regulatory pathways Development of cellular models relevant to neuronal biology and neuropsychiatric disorders Collaboration with computational biologists and RNA biochemists within
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Preferred Qualifications Experience with mouse models, CRISPR screening, organelle biology, transporter biology, quantitative proteomics or metabolomics, or computational analysis of large-scale datasets
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program. Our work focuses on the development of advanced cancer models, integrative genomic analyses, and the discovery of novel therapeutic strategies. Using systematic, interdisciplinary approaches
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is supported by NIH funding and sits within a rich collaborative network at Yale, including the Yale Cancer Center, the Yale Stem Cell Center, the Wu Tsai Institute, and computational collaborators in
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and cellular mechanisms underlying these disorders using cell-based assays, blood vessel organoids, and zebrafish and mouse models, working alongside neurosurgeons, computational scientists, and