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conditions, by bridging disciplines, from artificial intelligence, microelectronics, neuroengineering and nanoscience, to single-cell, imaging and molecular analysis, functional genomics and cell biology in
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nanopores. These methods will open the door to engineering sophisticated functionalities into synthetic membrane proteins - including selective transport, sensing, and signal transduction. Research
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nanopores. These methods will open the door to engineering sophisticated functionalities into synthetic membrane proteins - including selective transport, sensing, and signal transduction. Research
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ambitious PhD candidate to join the Efremov Lab at the VIB Center for Structural Biology (VIB-CSB) as part of the newly funded Marie Skłodowska-Curie Doctoral Network ANA-KIN. This position offers a unique
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Willingness to combine wet-lab experimental work and computational analysis Basic knowledge of statistics and/or programming (R, Python, or similar) Strong motivation to learn new techniques across
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Willingness to combine wet-lab experimental work and computational analysis Basic knowledge of statistics and/or programming (R, Python, or similar) Strong motivation to learn new techniques across
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computational design tools to engineer novel membrane proteins, then validate these designs experimentally, with the goal of integrating them into functional devices at the biology–electronics interface. Research
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computational design tools to engineer novel membrane proteins, then validate these designs experimentally, with the goal of integrating them into functional devices at the biology–electronics interface. Research
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protective immunity by mRNA vaccination. During your PhD you will obtain strong skills in nucleic acid immunity, molecular cell biology and in vivo mouse models of mRNA vaccination. Your work will be part of a