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editing strategies (CRISPR/Cas and other emerging tools) in bacteria, fungi, and yeasts. Conduct metabolic engineering approaches to enhance the production of high value‑added compounds. Develop and
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microscopy to generate new insights into how cells coordinate and repair DNA double-strand breaks? Using baker’s yeast, Saccharomyces cerevisiae , as a model organism, the project is designed to uncover novel
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multi-omics data integration and collaborative, interdisciplinary research. Project Description In this project, we focus on fungal cells present in microbiomes in general, and their yeast commensals in
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location for this position is in-person on campus at Princeton University. Applications must be submitted online at https://puwebp.princeton.edu/AcadHire/position/38081. Applications should include a cover
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techniques such as yeast display and deep mutational scanning, or computational candidates with experience in generative AI, reinforcement learning, or agentic AI. The lab is supported by world-class
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 10 minutes ago
, as articulated in the School’s Strategic Plan (https://pharmacy.unc.edu/about/oe/strategic-plan/). Our Vision is to be the global leader in pharmacy and pharmaceutical sciences. Our Mission is to
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and validate advanced methodologies for antibody characterization, such as ADE and ADCC assays, implement yeast-surface display for mapping antibody-antigen interactions, and establish systems