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Field
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Drosophila AMPs in fighting distinct infections Protein biochemistry and manipulation to probe AMP function Microbiological assay of AMP effects on diverse bacteria, and bacterial responses to those AMPs
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 months ago
of pathogenesis of the bacterium Clostridioides difficile, an obligate anaerobe and biosafety level 2 pathogen. This work involves genetic manipulation of bacterial genes for analysis of function and regulation
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Appointment Term: Open-ended Appointment Start Date: ASAP Group or Departmental Website: https://hinshawlab.stanford.edu/(link is external) How to Submit Application Materials: Please submit your application
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-9820. Department: Research Support Department's Website: https://crop-soil-environmental-sciences.uark.edu/ Summary of Job Duties: • Development and application of AI and machine learning for multi-omics
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advance basic understanding of viral manipulation of chromatin and uncover new aspects of chromatin biology and virus infection to identify new therapeutic targets and develop innovative strategies
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well as age-related neurological disorders such as Alzheimer’s disease (AD), and then to develop effective strategies for manipulation of T cell fate and function for disease prevention and immunotherapy
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the synthesis and manipulation of air-sensitive compounds are essential. Experience in the field of "transition metal-like" main group chemistry is desirable, but not essential for applicants with good experience
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electrophysiological recordings in awake-behaving animals, including silicon probe and optogenetic/opto-tagging approaches. Performs research using viral transfection and circuit manipulation techniques, including
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are looking for the following: PhD in cell biology, synthetic biology or a related field of biological sciences (essential). Strong background in molecular biology, cloning and genetic manipulation (essential
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
of self-tolerance to the insulin producing beta cells, and 2) Development of immunotherapies for T1D. The work makes use of several genetically manipulated mouse models of T1D, as well as humanized mouse