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Optical Manipulation of F-Actin with Photoswitchable Small Molecules.


ABSTRACT: Cell-permeable photoswitchable small molecules, termed optojasps, are introduced to optically control the dynamics of the actin cytoskeleton and cellular functions that depend on it. These light-dependent effectors were designed from the F-actin-stabilizing marine depsipeptide jasplakinolide by functionalizing them with azobenzene photoswitches. As demonstrated, optojasps can be employed to control cell viability, cell motility, and cytoskeletal signaling with the high spatial and temporal resolution that light affords. Optojasps can be expected to find applications in diverse areas of cell biological research. They may also provide a template for photopharmacology targeting the ubiquitous actin cytoskeleton with precision control in the micrometer range.

SUBMITTER: Borowiak M 

PROVIDER: S-EPMC8023282 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Optical Manipulation of F-Actin with Photoswitchable Small Molecules.

Borowiak Malgorzata M   Küllmer Florian F   Gegenfurtner Florian F   Peil Sebastian S   Nasufovic Veselin V   Zahler Stefan S   Thorn-Seshold Oliver O   Trauner Dirk D   Arndt Hans-Dieter HD  

Journal of the American Chemical Society 20200511 20


Cell-permeable photoswitchable small molecules, termed <b>optojasps</b>, are introduced to optically control the dynamics of the actin cytoskeleton and cellular functions that depend on it. These light-dependent effectors were designed from the F-actin-stabilizing marine depsipeptide jasplakinolide by functionalizing them with azobenzene photoswitches. As demonstrated, <b>optojasps</b> can be employed to control cell viability, cell motility, and cytoskeletal signaling with the high spatial and  ...[more]

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