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the biological mechanisms underlying immune tolerance in HSCT. The laboratory has the additional goal of using a bench-to-bedside approach to develop novel cellular therapies for GVHD prevention and for targeting
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researcher to work on Cellular Regulation and Mechanisms of Protein Arginylation Modification. Our research is aiming to elucidate the biological functions of arginylation, discover the protein substrates
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environment following DNA damage and ultimately engage one of several possible repair mechanisms. We are exploring 1) how DNA damage signaling impacts tumor progression and therapy responses, and 2) how DNA
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is supporting responsible stewardship of Indigenous research data in libraries and repositories. The DSISS team of information science researchers, Indigenous scholars, and data repository
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, Bioinformatics, Molecular Biology, Developmental Biology, Computational Biology, etc.). Exceptional skills in molecular biology, genomics, human cell culture, and bioinformatics. Preferred Qualifications Education
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milieu of host cells (T cell subsets, etc.) responsible for responding to this organism, both in acute and adaptive models of infection. Additionally, we are dissecting mechanisms of infection, including
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, standing, walking. Working on a computer. Ability to move to on and off-campus locations. Equipment Lab and office equipment. Salary Range: Base pay is commensurate with experience. The above statements are
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Position Summary Functional Genomics of circular RNAs in Alzheimer's Disease. The Cruchaga Lab, member of the NeuroGenomics and Informatics Center, is recruiting a motivated, creative, self-driven
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Position Summary The GrandPre group in the Department of Physics at WashU in St. Louis invites applications for a theoretical/computational postdoctoral position, with an anticipated start date
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About This Job Preferred Qualifications: Ph.D. in Electrical Engineering, Physics, Applied Physics, Biomedical Engineering, Computer Engineering, or related fields. Experience with Silicon photonics