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the current PhD project. This will be achieved by working with primary synovial cells obtained from joints from arthritis patients (e.g., CRISPR knock-outs and phosphoproteomics signaling), in vivo arthritis
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graduate students and postdoctoral fellows and will gain hands-on experience with techniques such as CRISPR genome engineering, protein structure-function analysis, quantitative behavioral assays, and
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addition to established cell lines. HIV laboratory research or related virology. Mouse models, including tissue harvesting and in vivo experimental work. CRISPR-based genetic perturbation approaches. Preferred
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computational biology. The general responsibilities of this position are as follows: Independent analysis of single cell and bulk genomics data including from CRISPR screens, kidney organoid models, and primary
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targeting using CRISPR-Cas9 and gene expression analysis. The final salary and offer components are subject to additional approvals based on UC policy. Your placement within the salary range is dependent on a
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research in this field employs high-resolution imaging, in vivo electrophysiology, genetic and genomic manipulation (e.g., CRISPR, RNAi), and computational/bioinformatic modeling to uncover how neural
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cells, 3D vascularized cardioids, CRISPR gene editing, high-throughput CRISPRko/i/a screening, single-cell multiomics, tissue engineering, and animal models. We welcome candidates with expertise in iPSC
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: This project will investigate the nuclear function of TPL-2 kinase. Techniques: Cell culture, protein-protein interaction studies, CRISPR/Cas9 gene editing, transcriptomic analysis by QPCR and RNA-seq
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models, including tissue harvesting and in vivo experimental work. CRISPR-based genetic perturbation approaches. Preferred Qualifications Education: Ph.D. - Doctor of Philosophy Certifications/Professional
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routinely performed in the lab, such as FISH and CRISPR. There will also be the chance to build on techniques we have recently started using in our system, such as expansion microscopy and laser ablation