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        <dc:title>Dynamic control of microbial movement by photoswitchable ATP antagonists</dc:title>
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        <bibo:abstract>Adenosine triphosphate (ATP) is the energy source for various biochemical processes and biomolecular motors in living things. Development of ATP antagonists and their stimuli-controlled actions offer a novel approach to regulate biological processes. Herein, we developed azobenzene-based photoswitchable ATP antagonists for controlling the activity of motor proteins; cytoplasmic and axonemal dyneins. The new ATP antagonists showed reversible photoswitching of cytoplasmic dynein activity in an in vitro dynein-microtubule system due to the trans and cis photoisomerization of their azobenzene segment. Importantly, our ATP antagonists reversibly regulated the axonemal dynein motor activity for the force generation in a demembranated model of Chlamydomonas reinhardtii. We found that the trans and cis isomers of ATP antagonists significantly differ in their affinity to the ATP binding site.</bibo:abstract>
        <bibo:volume>28</bibo:volume>
        <bibo:issue>30</bibo:issue>
        <dc:publisher>Wiley</dc:publisher>
        <bibo:doi rdf:resource="10.1002/chem.202200807" />
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