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includes developmental, computational, evolutionary and molecular biologists. References Elek, A. et al. Decoding cnidarian cell type gene regulation. bioRxiv 2025.07.01.662323 Preprint at https://doi.org
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cellular mechanisms that underlie neuropathic pain/degeneration, with a focus on Alzheimer's Disease. Among the key duties of the position are the following: Designs/performs experiments related to cellular
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regulation, combining single-cell genomics, chromatin profiling, and comparative genomics methods in a phylogenetically diverse array of eukaryotes. For more details about the lab, visit the lab website: https
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of bioengineered constructs and investigate underlying biological mechanisms. Analyze immune cell populations by flow cytometry, RNA-seq, and ATAC-seq Collaborate effectively with members of the research team
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spectrometry-based proteomics, the fellow will investigate protein remodeling at cellular resolution and generate insight into the biological mechanisms underlying CCS function and maintained heart rhythm
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and strengthen the research specialisms of the Faculty of Medicine. Expertise in one or more of the following areas is expected; molecular mechanisms of cellular proteostasis, proteostasis in cell
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Article) PMID: 23811687 Nature Cell Biology 13: 310-316 (2011) (Cover Article) PMID: 21336310 Molecular Cell 37: 668-678 (2010) (Cover Article) PMID: 20227371 Lab website: https://www.med.upenn.edu/apps
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mediating cellular senescence. Here a library of lentiviral vectors carrying miRNA target sequences, regulating expression of a reporter gene, will be used to identify and characterize senescence associated
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the laboratory of Dr Charles Winterhalter, focusing on investigating DNA damage repair mechanisms during Staphylococcus aureus infection (https://www.ncl.ac.uk/medical-sciences/people/profile
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aimed at blood clot formation, mechanics, and clot stability. The position will begin as early as November 1, 2025 and will support ongoing research in the Tutwiler laboratory. The primary role of a