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neurodevelopmental disorders. The successful candidate will develop and apply experimental and computational approaches to understand gene regulation and disease mechanisms in neural development and to evaluate
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collaborative research combining functional models of acquired drug resistance with the clinical validation of novel circulating tumor DNA (ctDNA) assays. While the primary focus is wet lab experimentation
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independence and leadership. Working in a highly collaborative environment at the intersection of basic science and translational oncology, trainees will interact closely with experimental biologists
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systems using cutting-edge computational approaches integrated with experimental molecular biology. The Breaker Laboratory has pioneered computational and comparative genomics strategies that led
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Ph.D., M.D., or equivalent credential in a relevant discipline and a strong record of publication. The lab employs both experimental and computational approaches; applicants should have familiarity with
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Parkinson’s and other neurodegenerative diseases (e.g., the lysosome), cancer and diseases of the immune system. We invent experimental approaches that implement ‘click chemistry’ and isotopically labelled
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established internationally recognized experimental platforms for the study of intraerythrocytic parasites, parasite metabolism, chemical biology, and preclinical models for therapeutic discovery and
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experimental design is expected. Experience with neurobiology, systems neuroscience, human pluripotent stem cells, neural differentiation, brain organoids, functional neural activity assays, or computational
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Postdoctoral Associate | Mitochondrial Genomics | Lake Lab — Yale University, Department of Genetics
We are seeking a motivated postdoc to join our growing team in the Yale University Department of Genetics. Our lab uses experimental and computational methods to investigate cellular and health
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well as part of an ENCODE functional characterization center. The lab is especially interested in non-coding cis-regulatory elements (CREs) and the variation within them, using high-throughput experimental