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Vermeulen Lab, you will develop and apply innovative omics strategies. Protein–protein interactions and dynamic protein states are important for cellular identity. Aberrations in proteins drive oncogenic
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) the molecular mechanisms of how these components work together to govern dynamic regulation of specific cellular processes. Our innovative approach combines proteomics, biochemistry, and advanced imaging
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you curious about the fundamental molecular changes that occur during ageing and disease? Utrecht University offers a PhD position on the role of macromolecular crowding in ageing and neurodegenerative
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interactions and dynamic protein states are important for cellular identity. Aberrations in proteins drive oncogenic signalling and disease progression. The goal of the Oncode Accelerator Growth Fund project is
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! The sensing technologies that are being developed in the Molecular Biosensing group (MBx, see www.tue.nl/mbx ) are unique in the world. The sensors are based on reversible single-molecule interactions
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— for prediction of molecular properties, activity, or synthetic feasibility. Working at the interface of cheminformatics, synthetic chemistry and drug discovery, collaborating with partners across academia and
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synthesis and assembly of concrete PCMs. RecyWax+ offers a PhD position for molecular-dynamics simulations of novel PCM systems for thermal storage. Recywax+ is supported within the Dutch Research Council NWO
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The Molecular Plasmonics group at the Eindhoven University of Technology has a PhD position in the field of metasurfaces for single-molecule biosensing. This project aims to develop a new generation
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Protein lipidation is the covalent attachment of lipids to proteins, regulating their trafficking, protein–protein interactions, and stability. This post-translational modification is dynamically
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intensively towards major strategic themes . Our focus is on Dynamics of Youth, Institutions for Open Societies, Life Sciences and Pathways to Sustainability. Sharing science, shaping tomorrow . Working