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Red-to-Near-Infrared Fluorescence Resonance Energy Transfer Reporters for Dual Imaging Applications

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dc.contributor.author Tran, Van Thi-Hong en_US
dc.contributor.author Ek, Frans en_US
dc.contributor.author Yassine, Hasan en_US
dc.contributor.author BEHERA, RAJALAXMI en_US
dc.contributor.author Hytönen, Vesa P. en_US
dc.contributor.author Conway, James R. W. en_US
dc.date.accessioned 2026-07-20T09:49:43Z
dc.date.available 2026-07-20T09:49:43Z
dc.date.issued 2026-07 en_US
dc.identifier.citation Small Methods en_US
dc.identifier.issn 2366-9608 en_US
dc.identifier.issn 2366-9608 en_US
dc.identifier.uri https://doi.org/10.1002/smtd.70828 en_US
dc.identifier.uri http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/11378
dc.description.abstract Fluorescence resonance energy transfer (FRET) biosensors enable quantitative visualization of protein interactions and signaling dynamics in living cells. However, most fluorescent protein (FP) FRET pairs occupy overlapping spectral regions, limiting multiplexing and simultaneous imaging of multiple pathways. In particular, the limited availability of well-characterized near-infrared (NIR) acceptors has constrained robust dual-FRET measurements within single cells. Here, we characterize a red-to-NIR FP FRET pair comprising mRuby2 and miRFP670nano3. Fluorescence lifetime imaging microscopy (FLIM) demonstrates efficient energy transfer with minimal spectral bleed-through and compatibility with established CFP/YFP-based reporters. In comparison with alternative dual-FRET strategies, including dark acceptors and long Stokes shift FPs, this pair enables multiplexed imaging without extensive spectral unmixing or correction. Structural modeling suggests that favorable donor–acceptor geometry may contribute to its FRET efficiency. We demonstrate the utility of this red-to-NIR pair by simultaneous FLIM-FRET imaging of Akt and S6K activity in single cells, providing parallel readouts of distinct branches of PI3K-mTOR signaling. In three-dimensional invasion assays, dual imaging of Src and ROCK reporters reveals spatially coordinated signaling dynamics not evident in single-reporter measurements. Together, these results establish mRuby2/miRFP670nano3 as a practical addition to the FP-FRET toolbox for multiplexed interrogation of signaling networks in living cells. en_US
dc.language.iso en en_US
dc.publisher WIley en_US
dc.subject Biology en_US
dc.subject 2026-JUL-WEEK3 en_US
dc.subject TOC-JUL-2026 en_US
dc.subject 2026 en_US
dc.title Red-to-Near-Infrared Fluorescence Resonance Energy Transfer Reporters for Dual Imaging Applications en_US
dc.type Article en_US
dc.contributor.department Dept. of Biology en_US
dc.identifier.sourcetitle Small Methods en_US
dc.publication.originofpublisher Foreign en_US


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