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Field
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therapy resistance and identifying potential therapeutic targets to overcome resistance. The lab will integrate a variety of research approaches, including clinical genomics, CRISPR-based functional
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future research into brain-based biomarkers and to (iii) genomic variation, using novel imaging-transcriptomics approaches, e.g., to identify putative treatment targets. To this aim, the successful
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Hutch is the only National Cancer Institute-designated cancer center in Washington. With a track record of global leadership in bone marrow transplantation, HIV/AIDS prevention, immunotherapy and COVID-19
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Hutch is the only National Cancer Institute-designated cancer center in Washington. With a track record of global leadership in bone marrow transplantation, HIV/AIDS prevention, immunotherapy and COVID-19
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interest in understanding the role of intracellular protein degradation in cancer. Inhibition of protein degradation by the ubiquitin-proteasome system (UPS) has emerged as a new way to target malignancies
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environments. Additionally, we have identified key gene families and their specific targets that can be enhanced through genome editing technologies. Our mission is to accelerate the adoption of these resilient
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cell populations which may involve targeted validation by working with a collaborator. Bulk tumor samples will include those of fresh-frozen material of pediatric cancer patients and archive FFPE RNA-seq
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Experience in power systems and system optimization Knowledge of battery storage technologies and battery management systems Strong track record of scientific publications Excellent communication skills in
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omics techniques and metabolic modeling Construct and characterize synthetic metabolic pathways in target strains Establish standard protocols (SOPs) and contribute to lab organization and shared
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metabolomes (targeted and untargeted) and plant transcriptomes In addition to collaborating with project partners, you will join an active and expanding community of PhD and Postdoc students in the plant