Photoswitchable epothilone-based microtubule stabilisers allow GFP-imaging-compatible, optical control over the microtubule cytoskeleton
Publication date
2022-03-01
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cc_by_nc
Abstract
Optical methods to modulate microtubule dynamics show promise for reaching the micron- and millisecond-scale resolution needed to decrypt the roles of the cytoskeleton in biology. However, optical microtubule stabilisers are under-developed. We introduce “STEpos” as GFP-orthogonal, light-responsive epothilone-based microtubule stabilisers. They use a novel styrylthiazole photoswitch in a design to modulate hydrogen-bonding and steric effects that control epothilone potency. STEpos photocontrol microtubule dynamics and cell division with micron- and second-scale spatiotemporal precision. They substantially improve potency, solubility, and ease-of-use compared to previous optical microtubule stabilisers, and the structure-photoswitching-activity relationship insights in this work will guide future optimisations. The STEpo reagents can contribute greatly to high-precision research in cytoskeleton biophysics, cargo transport, cell motility, cell division, development, and neuroscience.
Keywords
Bioorganic Chemistry, Microtubule Inhibitor, Natural Products, Photopharmacology, Photoswitch, Catalysis, General Chemistry
Citation
Gao, L, Meiring, J C M, Heise, C, Rai, A, Müller-Deku, A, Akhmanova, A, Thorn-Seshold, J & Thorn-Seshold, O 2022, 'Photoswitchable epothilone-based microtubule stabilisers allow GFP-imaging-compatible, optical control over the microtubule cytoskeleton', Angewandte Chemie-International Edition, vol. 61, no. 10, e202114614, pp. 1-11. https://doi.org/10.1002/anie.202114614