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Professional with aspirations to become a project manager and supervisor. Our research group engineers next-generation AAV gene therapy vectors, developing programmable nanobody-AAV composites for precision cell
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pathways that regulate cardiac organ development and homeostasis. Our lab performs computational and wet-lab work, though the ideal candidate should have experience in molecular biology, genomics, cell
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group working on Chlamydia pathogenesis. The person will investigate intercellular communication between infected epithelial cells and various neighboring cell types to understand how pathogen infection
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Description The selected candidate will join the team studying the signaling pathways responsible for the assembly of nuclear pore complexes during the cell cycle in healthy and diseased cells, in
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-protein and protein-ligand interactions at the heart of cell signaling pathways, focusing on integrins and TGF-betas. These studies are relevant to immunology, hemostasis, and human pathologies like
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bisulfite conversion while utilizing R or Python (e.g., Bioconductor) and maintaining reproducible workflows with Snakemake or Nextflow and version control (Git). Analyze Single-Cell and Multi-Omics Data
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this project, we will be in the ideal position to uncover mechanism of action of these disease relevant bacteria. This work will include cell culture work (cell lines and primary cells) as well as mouse models
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of disease progression and injury. The primary research topics involve testing how homeostatic mechanisms allow functional neuronal mitochondria to exist far away from the cell body and how failure to maintain
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with CRESCO Centre for Embryology and Healthy Development. Early embryogenesis is a critical stage in which gene regulation, collective cell dynamics and mechanical forces interact to drive blastocyst
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centered around the cellular and molecular mechanisms underlying the regulation of glycosylation in the Golgi apparatus. A specific aim is to dissect how the proteolytic cleavage of Golgi-resident enzymes is