Designing a Green Fluorogenic Protease Reporter by Flipping a Beta Strand of GFP for Imaging Apoptosis in Animals

A family of proteases called caspases mediate apoptosis signaling in animals. We report a GFP-based fluorogenic protease reporter, dubbed “FlipGFP”, by flipping a beta strand of the GFP. Upon protease activation and cleavage, the beta strand is restored, leading to reconstitution of the GFP and fluo...

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Veröffentlicht in:Journal of the American Chemical Society 2019-03, Vol.141 (11), p.4526-4530
Hauptverfasser: Zhang, Qiang, Schepis, Antonino, Huang, Hai, Yang, Junjiao, Ma, Wen, Torra, Joaquim, Zhang, Shao-Qing, Yang, Lina, Wu, Haifan, Nonell, Santi, Dong, Zhiqiang, Kornberg, Thomas B, Coughlin, Shaun R, Shu, Xiaokun
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Sprache:eng
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Zusammenfassung:A family of proteases called caspases mediate apoptosis signaling in animals. We report a GFP-based fluorogenic protease reporter, dubbed “FlipGFP”, by flipping a beta strand of the GFP. Upon protease activation and cleavage, the beta strand is restored, leading to reconstitution of the GFP and fluorescence. FlipGFP-based TEV protease reporter achieves 100-fold fluorescence change. A FlipGFP-based executioner caspase reporter visualized apoptosis in live zebrafish embryos with spatiotemporal resolution. FlipGFP also visualized apoptotic cells in the midgut of Drosophila. Thus, the FlipGFP-based caspase reporter will be useful for monitoring apoptosis during animal development and for designing reporters of proteases beyond caspases. The design strategy can be further applied to a red fluorescent protein for engineering a red fluorogenic protease reporter.
ISSN:0002-7863
1520-5126
1520-5126
DOI:10.1021/jacs.8b13042