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resourcefulness to help us solve problems, invent new technology, and develop cutting-edge products. Candidates should also have A Ph.D. in Bioengineering, Mechanical Engineering, Chemical Engineering, Electrical
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required Strong expertise in cell biology/biochemistry is required Experience with analysis of signal transduction mechanisms in vitro and in vivo is required Qualified candidates must also have advanced
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the molecular pathways of disease and to establish the mechanism of action of our therapeutics. The successful candidate will work with our team to analyze multi-level biomarker data generated from pre-clinical
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in high-impact journals. Responsibilities: Lead high content perturbation screens with multimodal readouts and leverage data to understand mechanism of action and build predictive models of cell
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statistical mechanics fundamentals. Proficiency in at least one commonly used molecular simulation package such as AMBER, LAMMPS, GROMACS, NAMD, Rosetta, MOE, Schrodinger, Docking tools, and structural
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biochemical & biophysical methods and collaborate with colleagues in Molecular Oncology to discover molecular mechanisms of signaling in colorectal cancer that are currently poorly understood. Who You Are: Team
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, oncologists, and bioinformaticians. The Opportunity: Lead projects that advance our understanding of the cellular and molecular mechanisms of T cell biology in inflammation and autoimmunity, with a main
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within the Department of Cellular and Tissue Genomics. His lab focuses on the identification of the epigenetic mechanisms driving malignant transformation, as well as intratumoral heterogeneity in
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Lab: The Moussion lab studies mechanisms of resistance to Immunotherapy in solid tumors by leveraging a novel in vivo high content imaging platform named STAMP (Ortiz-Muñoz et al, Nature, 2023 ). Dr
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transport mechanisms of human membrane targets. You will perform a range of experimental methods, including protein production, biochemical assays, native mass spectrometry and high-resolution structural