71 structural-engineering "https:" "https:" "https:" "https:" "https:" "UCL" "UCL" "UCL" Postdoctoral positions at Nature Careers in United States
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publication records (minimum of one-first author publication in a peer-reviewed journal) are encouraged to apply for the open position ( https://talent.stjude.org/postdoc/jobs/JR1859 ). St. Jude is an Equal
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leading therapeutic target. The project emphasizes cryo-EM structural studies to characterize LRRK2 signaling in disease states and identify novel therapeutic strategies for PD. Ideal Candidate We seek a
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experience and interests Your CV Contact information for three references Applications will be reviewed on a rolling basis until the position is filled. Apply via link here: https://careers.pageuppeople.com
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Diseases St. Jude Children's Research Hospital 262 Danny Thomas Place Memphis, TN 38105 steven-varga@stjude.org https://www.stjude.org/research/labs/varga-lab.html St. Jude is an Equal Opportunity Employer
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Research Associate to investigate how biomolecular phase transitions guide higher-order genome structure and influence disease. We combine biochemistry, genomics, cellular engineering, and advanced
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of Developmental Neurobiology, which houses specialized departmental shared resources, including an integrated support structure for rodent behavior testing, brain organoids, in vivo and ex vivo cellular imaging
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that currently lack effective treatments, such as Parkinsons Disease. By combining machine learning with quantum chemistry and structure based approaches, the project will accelerate the translation
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epigenetic processes in human cancers. We develop novel chemical probes, engineered enzymes, and synthetic chromatin platforms to dissect and manipulate chromatin-templated processes. This position aims
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states than any other established model. This platform serves as the foundation for a purpose-built discovery engine where we conduct high-throughput screens and perform deep mechanistic deconstruction
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to investigate how biomolecular phase transitions guide higher-order genome structure and influence disease. We combine biochemistry, genomics, cellular engineering, and advanced microscopy to build