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studies projects related to organ-organ communication. Our aim is to discover and study proteins in blood circulation – to understand which cells release them, where they go, what they do. In
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supervision of Dr. Liu , the incumbent will perform the following duties: ● Protein, RNA and DNA preparation and analyses; mammalian cell culture with sterile techniques. ● Data analysis and participate
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using scanning and transmission electron microscopy (SEM and TEM); investigating the release kinetics of active substances from nanoparticles under conditions simulating the target environment; conducting
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of this role will be exploring how intrinsically disordered proteins (IDPs) mediate signaling mechanisms, with a particular emphasis on cancer therapeutics. Supported by a multi-year ARPA-H grant, this project
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expertise in 1) protein dynamics; 2) molecular dynamics simulations; and 3) high-performance computing environments. Prior programming experience is preferred but not required. The postdoctoral scientist will
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proteins and pathways implicated on disease pathogenesis. We are currently analyzing brain, CSF and blood, multi-omic data (transcriptomics, proteomics and metabolomics), from a large collection of well
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wall composition, remodelling enzymes, and their regulation. Hands-on experience with biochemical characterisation of cell wall proteins, including enzymatic activity assays (e.g. methylesterase
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for Alzheimer’s, Parkinson, and Dystonia as well as to identify novel proteins and pathways implicated on disease pathogenesis. We are currently analyzing brain, CSF and blood, multi-omic data (transcriptomics
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USNH Employees should apply within Workday through the Jobs Hub app The research position(s) are within the broad area of biophysics, structural modeling, and molecular dynamics (MD) simulations
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proteins in tumor development and progression. We are looking for ambitious highly motivated candidates with Ph.D. degree and a strong background in biochemistry, molecular biology, signal transduction, cell