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Updated: Apr 16, 2026

In Vivo Biosensor Tracks Non-apoptotic Caspase Activity in Drosophila
Published on: November 27, 2016
Rationally designed fluorogenic protease reporter visualizes spatiotemporal dynamics of apoptosis in vivo
Tsz-Leung To1, Beverly J Piggott2, Kalpana Makhijani3
1Departments of Pharmaceutical Chemistry and Cardiovascular Research Institute, and Yuhnung.jan@ucsf.edu Xiaokun.Shu@ucsf.edu.
Abstract:
Fluorescence resonance energy transfer-based reporters have been widely used in imaging cell signaling; however, their in vivo application has been handicapped because of poor signal. Although fluorogenic reporters overcome this problem, no such reporter of proteases has been demonstrated for in vivo imaging. Now we have redesigned an infrared fluorescent protein so that its chromophore incorporation is regulated by protease activity. Upon protease activation, the infrared fluorogenic protease reporter becomes fluorescent with no requirement of exogenous cofactor. To demonstrate biological applications, we have designed an infrared fluorogenic executioner-caspase reporter, which reveals spatiotemporal coordination between cell apoptosis and embryonic morphogenesis, as well as dynamics of apoptosis during tumorigenesis in Drosophila. The designed scaffold may be used to engineer reporters of other proteases with specific cleavage sequence.
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