The phosphatase and tensin homolog (PTEN) is a vital protein that maintains an inhibitory brake for cellular proliferation and growth. Accordingly, PTEN loss-of-function mutations are associated with a broad spectrum of human pathologies. Despite its importance, there is currently no method to directly monitor PTEN activity with cellular specificity within intact biological systems. Here we describe the development of a FRET-based biosensor using PTEN conformation as a proxy for the PTEN activity state, for two-photon fluorescence lifetime imaging microscopy. We identify a point mutation that allows the monitoring of PTEN activity with minimal interference to endogenous PTEN signaling. We demonstrate imaging of PTEN activity in cell lines, intact Caenorhabditis elegans and in the mouse brain. Finally, we develop a red-shifted sensor variant that allows us to identify cell-type-specific PTEN activity in excitatory and inhibitory cortical cells. In summary, our approach enables dynamic imaging of PTEN activity in vivo with unprecedented spatial and temporal resolution.
Genetically encoded biosensor for fluorescence lifetime imaging of PTEN dynamics in the intact brain.
用于完整大脑中 PTEN 动态荧光寿命成像的基因编码生物传感器
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作者:Kagan Tomer, Gabay Matan, Meenakshisundaram Aasha, Levi Yossi, Eid Sharbel, Malchenko Nikol, Maman Maya, Nitzan Anat, Ravotto Luca, Zaidel-Bar Ronen, Eickholt Britta Johanna, Gal Maayan, Laviv Tal
| 期刊: | Nature Methods | 影响因子: | 32.100 |
| 时间: | 2025 | 起止号: | 2025 Apr;22(4):764-777 |
| doi: | 10.1038/s41592-025-02610-9 | 研究方向: | 其它 |
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