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Field
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of the model organisms used (the yeasts S. cerevisiae and S. pombe, the fungus P. Anserina, the fly D. melanogaster and the nematode C. elegans as well as rodent (mouse and rat) and human models) and the
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the mechanisms behind their transmission across generations. We also aim to understand how epigenetic mis-regulation can cause developmental defects and disease. In the Greer lab we use the nematode C. elegans
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the mechanisms behind their transmission across generations. We also aim to understand how epigenetic mis-regulation can cause developmental defects and disease. In the Greer lab we use the nematode C. elegans
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the nematode C. elegans. Our lab integrates genetics, live imaging, quantitative analysis, and computational approaches to uncover the molecular mechanisms regulating aging and longevity. Minimum Qualification
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within the Department of Physics and the Princeton Neuroscience Institute. The lab performs precision measurements of brain activity and behavior in the nematode C. elegans as well as the fruit fly
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graduate teaching assistants; Designing or re-designing courses; Using cell culture and model organisms (Drosophila, C. elegans, Xenopus, zebrafish) in a research or didactic setting that emphasizes cell and
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to quantify the viscoelastic properties and phase transitions of MEC-2 and related protein condensates. Working closely with team members and collaborators in NMR spectroscopy, and C. elegans neurobiology
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the nematode C. elegans , with an emphasis on X-chromosome dosage compensation, which balances gene expression between XX hermaphrodites and XO males, and the specification of sexual fate. Previous work by
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Independently conduct molecular cloning, mutagenesis, protein purification, protein characterization, protein engineering and design, enzyme kinetics, protein crystallization. Microbiology assays, including C
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, including c. elegans and sea lamprey model systems. Under the direction of the Principal Investigator, the incumbent will work on a project in a laboratory dedicated to studying the molecular pathogenesis