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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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. The research will involve training machine-learning models on large structure and sequence datasets and integrating membrane-specific biophysical constraints to enable the design of membrane proteins and
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. The research will involve training machine-learning models on large structure and sequence datasets and integrating membrane-specific biophysical constraints to enable the design of membrane proteins and
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conformational landscapes and regulatory mechanisms Integration of structural and functional data to uncover novel regulatory interfaces Collaboration with leading academic and industrial partners across Europe
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transition from intensive wet-lab experimentation in the early phase of the project towards increased involvement in data analysis, integration, and scientific writing in later stages. The project offers a
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transition from intensive wet-lab experimentation in the early phase of the project towards increased involvement in data analysis, integration, and scientific writing in later stages. The project offers a