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of Biomedical Engineering, please visit https://www.bme.ubc.ca/ . A Research Assistant/Technician position for developing molecular tools and techniques in high-throughput enzyme characterization is available in
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University of Toronto | Downtown Toronto University of Toronto Harbord, Ontario | Canada | 3 days ago
the central dogma of genetics and how molecular techniques are used to investigate cellular processes. Topics include structure and function of the nucleus, DNA replication and cell cycle control
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Shrum building and the Biomedical Research Centre (BRC). For more information about the School of Biomedical Engineering, please visit https://www.bme.ubc.ca/ . The position will require the incumbent
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University of Toronto | Downtown Toronto University of Toronto Harbord, Ontario | Canada | about 2 months ago
essential information and practical experience in recombinant DNA technology, molecular biology and bio-informatics. Please ensure you apply at this link as applications are not seen on SuccessFactors: https
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-based therapeutics. Research programs may address fundamental, methodological, applied, or translational questions involving DNA, RNA, modified nucleic acids, or related molecular systems. The successful
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blot analyses, protein extraction, and DNA/RNA extraction Contribute to the establishment and ongoing maintenance of the lab's cell bank Analyze data generated from cell-based assays and high-content
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. blood, CSF, DNA) from enrolled participants, including arranging collection during visits, ensuring linkage between samples and participant records, and supporting related logistics (scheduling, transport
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. To do so, the researcher will notably analyze bulk and single-cell multi-omics datasets (gene expression, DNA methylation, chromatin accessibility, transcription factor binding, and others) from mouse and
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, molecular biology or a related field. The applicant should have previous teaching experience at the University level, and be experienced with concepts in genomic methodologies, including DNA-based methods
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at the molecular and tissue level, and how its disruption contributes to hereditary cancers and pediatric malignancies (https://bcchr.ca/maxwell-lab ). Key areas include: Mechanisms of cell division fidelity