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RNA sequencing, B cell culture, genetic modification of human/mouse B cells, CRISPR/cas9, sterile technique for mammalian tissue culture with BSL-2+ practices, and ELISA/ELI spot. Bioinformatics
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: Conduct cutting-edge research in gene therapy, including gene editing, the use of viral vectors, and emerging technologies such as CRISPR. Develop and validate preclinical models (in vitro and in vivo
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‑lab expertise, including Western blotting, DNA/RNA isolation, PCR and qPCR, and basic immunofluorescence imaging Experience in genetic engineering and genome editing (e.g. CRISPR). Demonstrated ability
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for plant transformation, discovering protein-protein interactions using proximity labeling, reverse genetics - preparation of mutants by CRISPR/Cas9 systems, phenotypic analysis of mutants using mainly
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: 1 year Appointment Start Date: Flexible Group or Departmental Website: http://www.sheltzerlab.org (link is external) How to Submit Application Materials: Email your application to Dr. Sheltzer Does
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Stanford Cancer Center Pediatrics Postdoc Appointment Term: Two years Appointment Start Date: 1/1/2026 Group or Departmental Website: http://www.sheltzerlab.org (link is external) How to Submit Application
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at the following website: https://biology.mit.edu/profile/h-robert-horvitz Please note: This is a fixed-term position with an anticipated end date not to exceed August 31, 2027, aligned with current HHMI funding
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these questions, we use a novel multi-omics approach that integrates high-throughput imaging and machine learning methods with CRISPR/Cas9 screens and saturation mutagenesis to answer central questions about the
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editing strategies (CRISPR/Cas and other emerging tools) in bacteria, fungi, and yeasts. Conduct metabolic engineering approaches to enhance the production of high value‑added compounds. Develop and
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common CNAs found in breast cancer (https://pubmed.ncbi.nlm.nih.gov/39567747/). Several lines of evidence suggest that these CNAs increase cell fitness and that cells carrying these CNAs represent