11 parallel-processing-bioinformatics Postdoctoral positions at St Jude Children's Research Hospital
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The Yang Lab in Department of Surgery at St. Jude Children's Research Hospital is seeking a highly motivated Postdoctoral Fellow to join our translational research team. The research focuses
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al, Nature Cancer , 2026). Research Focus & Responsibilities Process clinical samples for next-generation sequencing and multi-omic profiling Contribute to studies involving liquid biopsies and single
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. • Direct experience with isolation and functional characterization of GPCRs and their signaling partners (G-proteins, arrestins, GPCR kinases, etc.) is strongly preferred. Selected Publications: Parallel
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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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Computational Postdoctoral Researcher - Bacterial Genomics, Transcriptomics, and Single-Cell Genomic
, transcriptomics, and single-cell biology. Qualifications Required • Ph.D. in Bioinformatics, Computational Biology, Computer Science, Mathematics, Statistics, or a related quantitative discipline. • Candidates
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, Bioinformatics, Computer Science, Mathematics, Physics, or related field. St. Jude is an Equal Opportunity Employer No Search Firms St. Jude Children's Research Hospital does not accept unsolicited assistance from
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, biochemistry, cell or developmental biology, or bioinformatics are invited to apply. The candidate will be supported by a NIH grant to explore regulatory T cells based on newly developed experimental platforms
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qualifications: PhD or equivalent degree in genetics, epidemiology, biostatistics, bioinformatics, or a related quantitative field Strong publication record Strong research interests in genetic epidemiology
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by cryo-electron tomography, including cell culture under BSL-2 containment, vitrification, cryo-FIB milling and tilt-series collection Process tomograms and characterise macromolecular complexes by
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are often tied to their subcellular localization and the biological processes they are involved in. We have extensively characterized how the molecular grammar of prion-like low-complexity domains encode