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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
of competencies necessary to perform the work. Management Preferences Coursework in chemistry or closely related field Strong molecular biology skills Expertise in single-molecule fluorescence including FRET In
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, through optical methods, FRET, microfluidics, microfabrication and surface biofunctionalization. 2. Main responsibilities The candidate will have the following responsibilities: i) carries out scientific
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: Design of a library of TMP stress sensors Development of single-molecule FRET assays to quantify TMP self-association equilibria and kinetics Engineering and characterization of asymmetric lipid vesicles
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assays by biophysical methods (SPR, MST, ITC, BLI) or Fluorescence-based (i.e. FP, TR-FRET) methods, and optimizing workflows for ligand discovery. Depending on your skills, you might also work
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techniques and specialized biophysical assays, including Förster Resonance Energy Transfer (FRET) measurements, to evaluate drug candidates. Under guidance of PI, analyze, interpret, and document experimental
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Department Pharmacology and Toxicology Department Website Link https://www.pharmacy.arizona.edu/departments-directory/pharmacology-toxicology-department Location Tucson Campus Address Tucson, AZ USA Position
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within the research project “Engineering Circularly Polarized Light emission through FRET in solution-processed Organic Reconfigurable Materials” (Acronym CPL@FORM). • Performing duties of an assistant
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the Molecular Crowding of Ligand-Induced Riboswitch Folding: Kinetic/Thermodynamic Insights from Single Molecule FRET Spectroscopy”, J. Phys. Chem. 126, 6419–6427 (2022) https://doi-org.colorado.idm.oclc.org
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biology experiments including flow cytometry, microscopy (standard imaging and FRET, FLIM, FRAP), proteomics, lipidomics and transcriptomics analyses. We are also expanding to iPSC-neurons and in vivo work
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mechanisms, such as fatigue, fretting, and corrosion, is beneficial. The ideal applicant will be capable of working independently, efficiently managing their own workload, and collaborating productively within