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A Reuable Molecular Rocket as a Photoresponsive Potassium Transporter

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Figshare2024-05-23 更新2026-04-08 收录
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<b>Artificial photoresponsive transport systems are particularly intriguing because they offer the potential for precise spatio-temporal control, rapid response times and minimal toxicity associated with the light. We report here a reusable, photoresponsive, ion-transporting molecular rocket, achieving reusability through a photoregulated </b><b><i>β</i></b><b>-cyclodextrin (</b><b><i>β</i></b><b>-CD)-azobenzene host-guest complex. In this complex, a lipid-anchored </b><b><i>β</i></b><b>-CD serves as the rocket launch base, tightly immobilizing through host-guest interactions the otherwise freely moving trans-rocket derived from a crown ether-modified trans-azobenzene motif, but rapidly releasing most of it upon 365 nm UV irradiation that converts trans-rocket to cis-rocket. The launched cis-rocket functions well as a highly efficient potassium transporter, delivering a low EC</b><sub><strong>50</strong></sub><b> value of 1.51 μM and a drastic transport activity enhancement by ~ 400% relative to the base-bound trans-rocket (EC</b><sub><strong>50</strong></sub><b> = 7.46 μM), with on-off activities repeatedly regulated by light. In the absence of the base, the on-off activities between cis- and trans-rockets however differ by only 80% (1.35 μM vs 2.45 μM).</b><br>

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2024-05-23
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