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Photocleavable Fluorescent Membrane Tension Probes: Fast Release with Spatiotemporal Control in Inner Leaflets of Plasma Membrane, Nuclear Envelope, and Secretory Pathway

Published inAngewandte Chemie, vol. 61, no. 1, e202113163
Publication date2022
First online date2021-11-23
Abstract

Mechanosensitive flipper probes are attracting interest as fluorescent reporters of membrane order and tension in biological systems. We introduce PhotoFlippers, which contain a photocleavable linker and an ultralong tether between mechanophore and various targeting motifs. Upon irradiation, the original probe is released and labels the most ordered membrane that is accessible by intermembrane transfer. Spatiotemporal control from photocleavable flippers is essential to access open, dynamic or elusive membrane motifs without chemical or physical interference. For instance, fast release with light is shown to place the original small-molecule probes into the innermost leaflet of the nuclear envelope to image changes in membrane tension, at specific points in time of membrane trafficking along the secretory pathway, or in the inner leaflet of the plasma membrane to explore membrane asymmetry. These results identify PhotoFlippers as useful chemistry tools to enable research in biology.

Keywords
  • Fluorescent probes
  • Mechanosensitivity
  • Membrane asymmetry
  • Membrane tension
  • Photocleavage
Research groups
Citation (ISO format)
LOPEZ ANDARIAS, Javier et al. Photocleavable Fluorescent Membrane Tension Probes: Fast Release with Spatiotemporal Control in Inner Leaflets of Plasma Membrane, Nuclear Envelope, and Secretory Pathway. In: Angewandte Chemie, 2022, vol. 61, n° 1, p. e202113163. doi: 10.1002/anie.202113163
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Journal ISSN1433-7851
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