-
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
-
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
-
opportunity to investigate the structural mechanisms that regulate protein kinase function, combining state-of-the-art cryo-electron microscopy, protein biochemistry, and molecular biology within a highly
-
conditions, by bridging disciplines, from artificial intelligence, microelectronics, neuroengineering and nanoscience, to single-cell, imaging and molecular analysis, functional genomics and cell biology in
-
nanopores. These methods will open the door to engineering sophisticated functionalities into synthetic membrane proteins - including selective transport, sensing, and signal transduction. Research
-
nanopores. These methods will open the door to engineering sophisticated functionalities into synthetic membrane proteins - including selective transport, sensing, and signal transduction. Research