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Postdoc position (d/f/m) developing gene editing therapies for ANO5-related muscular dystrophy Work time full-time Start date 01.04.2026 Employment period limited Application deadline 25.03.2026
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of Biological Chemistry and Pharmacology, for a period generally not to exceed three years; performs basic science and applied research in the field of genome editing, Base editing, Prime editing, CRISPR
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cloning for CRISPR gene editing. The successful candidate will be expected to carry out these tasks as routine experiments, working both independently and as part of a team. The post holder will be required
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environments. Additionally, we have identified key gene families and their specific targets that can be enhanced through genome editing technologies. Our mission is to accelerate the adoption of these resilient
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significant potential for adaptation to these challenging environments. Additionally, we have identified key gene families and their specific targets that can be enhanced through genome editing technologies
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. MLLr acute leukemia is the target in this project Focus on epitranscriptomic modifications and gene expression with regulation of translation in cancer Multi-Omics single cell sequencing approaches
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position within a Research Infrastructure? No Offer Description Post-Doctoral Fellowship Opportunity for Gene Editing Research and Discovery of Plasmodium spp. inhibitors at the University of São Paulo's São
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students, and generate reports or publications. Qualifications Required Qualifications: -PhD (must have defended thesis) -NK cell biology and gene editing. -Experience with CRISPR editing also required
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interests, you will have the opportunity to work with: High‑throughput functional genomics: pooled CRISPR and base‑editing screens, barcoded overexpression libraries, massively parallel reporter assays
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University of Massachusetts Medical School | Worcester, Massachusetts | United States | about 2 months ago
for neurological and mitochondrial diseases. Our active research projects include: Gene editing in mitochondrial DNA: we use base editing technologies to create mouse models for gene mutations in the mitochondrial