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a cutting-edge project unraveling the molecular dynamics of phage-bacteria warfare to combat antibiotic resistance! The project aims to study fundamental molecular mechanisms of how phages interact
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for antidepressants and cocaine/amphetamines, respectively. We reveal their multifaceted nature, acting as molecular motors which harvest the energy to drive substrate transport from ion gradients. These remarkable
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. These transporters function as molecular machines, harnessing ion gradients to drive substrate uptake, and display features of enzymes, receptors, and ion channels. Grounded in biophysical pharmacology, our lab
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of the interactions between light and materials. In particular, we explore functions, underlying photophysics and photochemistry of fluorescent molecular materials and semiconductor nanomaterials. We develop
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tools from chemistry and biology, and apply these in studies of therapeutic peptides and proteins. Our aims are to develop modulators for protein-protein interactions (PPIs) and to provide molecular-level
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of computational chemistry. Applicants can have a background from cheminformatics including RDKit, machine learning applied to chemistry, and molecular modeling Our group and research- and what do we offer? Our