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We are seeking a motivated and creative PhD student to develop the next generation of AI-driven protein design methods that explicitly account for protein–lipid and protein–membrane interactions
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We are seeking a motivated and creative PhD student to develop the next generation of AI-driven protein design methods that explicitly account for protein–lipid and protein–membrane interactions
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students will have the opportunity to work together with internationally recognized scientists and develop their research projects in an innovative research environment. We also have a PhD Association, which
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with cutting-edge instrumentation for both single-particle analysis and cryo-electron tomography. Research Project Protein kinases control nearly every aspect of cellular signaling and are among the most
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, nanopores, and ion channels for in vitro bioelectronic applications. The project sits at the interface of protein design and applied technology: the successful candidate will learn and apply state-of-the-art
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, nanopores, and ion channels for in vitro bioelectronic applications. The project sits at the interface of protein design and applied technology: the successful candidate will learn and apply state-of-the-art
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Chlamydomonas reinhardtii. The project will investigate how genome dynamics and environmental conditions interact to shape the evolutionary success of polyploids using: Experimental evolution approaches
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Chlamydomonas reinhardtii. The project will investigate how genome dynamics and environmental conditions interact to shape the evolutionary success of polyploids using: Experimental evolution approaches
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/maelfait-lab Research Project Nucleic acids are potent triggers of immune responses. The presence of virus-derived RNA or DNA molecules activates nucleic acid sensors inside the host cell, which stimulates
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the context of the Methusalem BioMedAI (www.kuleuven.be/methusalem-biomedai), this interdisciplinary project aims to bridge gene regulation, neuronal cell types, electrophysiology, morphology, and connectomics