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complex carbohydrates shape, support and functionalize biological cells and tissues. By using a wide range of molecular and structural biology tools as well as glycobiology and biochemistry, we study the
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an independent lab (if that’s where you’re headed) What You Bring A Ph.D. in biophysics, quantitative biology, biomedical engineering, or a related field with relevant expertise Enthusiasm to learn new skills
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where you’re headed) What You Bring: A Ph.D. in physics, biophysics, neuroscience, applied mathematics, quantitative biology, biomedical engineering, or a related field with relevant expertise Enthusiasm
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, cell biology, and mouse genetics to discover new enzymatic activities and understand the physiological function of these enzymes. They specifically emphasize work on the regulation of the enzymes because
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autoclaving laboratory glassware, propagation and long-term storage of bacteria and phage cultures, conducting basic techniques in microbiology and molecular biology. Conduct independent research projects
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inclusive research environment Training in protein biochemistry, immunology, virology, evolutionary biology, statistical inference methods, and computational biology Mentorship tailored to your scientific and
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Imaging research area at Janelia. We aim to develop molecular tools that enable new biology. We often apply directed evolution, structure-guided design, and high-throughput functional screening
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and national levels. This is a new research direction for a lab that has worked for 20+ years at the intersection of experimental and computational biology. Previous work in the lab has focused
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the Department of Molecular Biology at UT Southwestern Medical Center in Dallas. We are a diverse group of passionate scientists investigating broad questions in RNA biology. In particular, we are interested in
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in biochemistry, structural biology, cell biology or physiology to study the mechanistic basis of lipid storage in lipid droplets or lipid metabolism in neurodegenerative diseases and cancer. More