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, MD, or combined degrees), with a general background in molecular and cell biology, biochemistry, and genetics. A Postdoctoral Research Fellow position is available to study molecular regulation
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entail genetic manipulation of bacterial pathogens, molecular biology, protein purification and characterization, tissue culture, models of infectious disease, and bioinformatics. The successful candidate
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. Jordan Meier in the Department of Chemical Biology and Therapeutics which aims to identify regulators of RNA modification-dependent pathways using genetic and small molecule screening approaches. Work will
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background in molecular biology, cell biology, cancer biology, biochemistry, genetics, pharmacology, or a related biomedical field. Very strong commitment to rigor and scientific integrity. Hands-on experience
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on understanding the novel functions of fusion transcriptional factors in rhabdomyosarcoma. This work is highly mechanistic and translational, leveraging cutting-edge genetic, epigenetic, cellular and pharmacologic
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retrotransposons is a selective dependency of myeloid leukemia ( Nature Genetics 53:672, 2021) Described novel mechanisms driving therapy resistance to FDA-approved therapies in myeloid leukemia ( Cancer Discovery
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microscopy imaging of neuronal activity in mutant mice, with a focus on models of high-risk genetic risks for schizophrenia. St. Jude Children's Research Hospital is a world-class research institution
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. Experience in one or more of the following areas is desirable: primary cilia biology, mitochondrial homeostasis, mouse genetics, imaging, biochemistry, genomics, stem/progenitor cell biology, or disease models
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but not required. Strong written and spoken English, presentation, and communication skills. Minimum Education and/or Training: Ph.D. degree or equivalent in Computational Biology, Genetics/Genomics
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Computational Postdoctoral Researcher - Bacterial Genomics, Transcriptomics, and Single-Cell Genomic
the lab is to bridge bacterial genomics with transcriptomics to uncover how genetic variation, genome architecture, and cellular states shape bacterial behavior and adaptation. The successful candidate