Pyrrole Hemithioindigo Antimitotics with Near-Quantitative Bidirectional Photoswitching that Photocontrol Cellular Microtubule Dynamics with Single-Cell Precision*
Publication date
2021-10-25
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Abstract
We report the first cellular application of the emerging near-quantitative photoswitch pyrrole hemithioindigo, by rationally designing photopharmaceutical PHTub inhibitors of the cytoskeletal protein tubulin. PHTubs allow simultaneous visible-light imaging and photoswitching in live cells, delivering cell-precise photomodulation of microtubule dynamics, and photocontrol over cell cycle progression and cell death. This is the first acute use of a hemithioindigo photopharmaceutical for high-spatiotemporal-resolution biological control in live cells. It additionally demonstrates the utility of near-quantitative photoswitches, by enabling a dark-active design to overcome residual background activity during cellular photopatterning. This work opens up new horizons for high-precision microtubule research using PHTubs and shows the cellular applicability of pyrrole hemithioindigo as a valuable scaffold for photocontrol of a range of other biological targets.
Keywords
cytotoxicity, hemithioindigo, microtubule dynamics, photopharmacology, photoswitch, Catalysis, General Chemistry, SDG 2 - Zero Hunger
Citation
Sailer, A, Meiring, J C M, Heise, C, Pettersson, L N, Akhmanova, A, Thorn-Seshold, J & Thorn-Seshold, O 2021, 'Pyrrole Hemithioindigo Antimitotics with Near-Quantitative Bidirectional Photoswitching that Photocontrol Cellular Microtubule Dynamics with Single-Cell Precision*', Angewandte Chemie-International Edition, vol. 60, no. 44, pp. 23695-23704. https://doi.org/10.1002/anie.202104794