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Rational Design of a GFP-Based Fluorogenic Caspase Reporter for Imaging Apoptosis In Vivo

Título traducido de la contribución: Rational Design of a GFP-Based Fluorogenic Caspase Reporter for Imaging Apoptosis In Vivo
  • Tsz Leung To
  • , Antonino Schepis
  • , Ruben Ruiz Gonzalez
  • , Qiang Zhang
  • , Dan Yu
  • , Zhiqiang Dong
  • , Shaun R. Coughlin
  • , Xiaokun Shu

Producción científica: Artículo en revista indizadaArtículorevisión exhaustiva

43 Citas (Scopus)

Resumen

Fluorescence resonance energy transfer-based executioner caspase reporters using GFP are important tools for imaging apoptosis. While these reporters are useful for imaging apoptosis in cultured cells, their in vivo application has been handicapped by poor signal to noise. Here, we report the design and characterization of a GFP-based fluorogenic protease reporter, dubbed ZipGFP. ZipGFP-based TEV protease reporter increased fluorescence 10-fold after activation by protease. A ZipGFP-based executioner caspase reporter visualized apoptosis in live zebrafish embryos with spatiotemporal resolution. Thus, the ZipGFP-based caspase reporter may be useful for monitoring apoptosis during animal development and for designing reporters of proteases beyond the executioner caspases.
Título traducido de la contribuciónRational Design of a GFP-Based Fluorogenic Caspase Reporter for Imaging Apoptosis In Vivo
Idioma originalInglés
Páginas (desde-hasta)875-882
Número de páginas7
PublicaciónCell Chemical Biology
Volumen23
N.º7
DOI
EstadoPublicada - 21 jul 2016

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