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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
limited, to circuit mapping, chemogenetic and optogenetic manipulation of signaling pathways, CRISPR-Cas9 based genome editing, single cell transcriptomics, brain organoids, and human cortical connectomics
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as molecular tools, and applying these novel tools in disease models. Recently, we are actively working on RNA-guided systems, such as the well-known CRISPR-Cas, which is widely used for genome editing
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. Successful applicants will have a strong publication record, excellent communication skills, and a Ph.D. or equivalent degree in molecular biology, cell biology, genetics, genomics, immunology, or a related
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design, multi-gene circuit engineering, targeted genome/transcriptome/epigenome editing systems, construct validation, and rapid upstream prototyping in transient plant-expression systems. Develop and
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of Gothenburg in Sweden and the Norwegian Institute of Public Health (Oslo). We investigate genetic and environmental factors affecting human gestational age at pre-term birth. We work with unique genomic data
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approach encompassing protein biochemistry, proteomics, molecular genetics, genome editing, and cell biology. Primarily, these investigations will be conducted in Arabidopsis and Tobacco, with a subsequent
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reflect prostate cancer development and progression in Black men. Using advanced gene-editing techniques, spatial characterization of prostate tumoroids, and next-generation sequencing, we will identify and
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stable transgenic approaches as well as CRISPR/Cas-mediated genome editing Strong proficiency in molecular biology, including PCR, qt-PCR, primer and construct design, molecular cloning, nucleic acid
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Postdoctoral Research Associate - Basic and Translational Research Training in Pediatric Classical H
. Fellows will receive training in state-of-the-art approaches in bulk and single-cell -omics, gene editing, functional genomics, and in vitro and in vivo models of hematologic disease. This is complemented
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the cellular mechanisms that drive repair following damage. Our research integrates multiple experimental approaches—including transcriptomics, histology, genome editing, functional calcium imaging