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Post-doctoral Fellow in the Department of Orthopaedics and Traumatology, School of Clinical Medicine
research facilities at the University to develop innovative treatments. Duties and Responsibilities Design and conduct experiments involving molecular biology, genetics, and gene editing (e.g., CRISPR/Cas9
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these data and we will also analyze primary samples from patients with B cell malignancies. We will identify functions of lncRNAs using CRISPR interference, RNA pulldown experiments, mouse models, and
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induced pluripotent stem cells (iPSCs); differentiation of pluripotent cells into neuronal lineages; genome engineering using CRISPR/Cas9; molecular biology and biochemistry laboratory techniques (e.g
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to Stockholm–Arlanda International Airport. More information about the department/division: https://www.slu.se/institutioner/vaxtbiologi-skogsgenetik/ Read more about our benefits and what it is like to work
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-display, proximity ligation or similar. - Experience in in vivo validation of genome editing technologies. - Experience in the development of CRISPR-based or other programmable genome editing technologies
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information about the department/division: https://www.slu.se/institutioner/vaxtbiologi-skogsgenetik/ Read more about our benefits and what it is like to work at SLU: https://www.slu.se/om-slu/jobba-pa-slu
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Airports Council International for many years. For additional information on life in Indy: https://faculty.medicine.iu.edu/relocation/. Job Summary Primary Duties and Responsibilities: Bioinformatic analysis
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University of California, San Francisco | San Francisco, California | United States | about 8 hours ago
including cell culture, flow cytometry, gene targeting using CRISPR-Cas9 and gene expression analysis. The final salary and offer components are subject to additional approvals based on UC policy. Your
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of CRISPR-based microbiome engineering tools, to both isolate individual community members for analysis and to augment the entire microbiome community with modified functions. These isolates and augmented
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in early mammalian development. Involve whole genome amplification, NGS, bioinformatics, immunostaining and microscopy, induction of site specific DSBs using Crispr/Cas9 and the evaluation of genetic