Destabilized near-infrared fluorescent nanobodies enable background-free targeting of GFP-based biosensors for imaging and manipulation.

Barykina, Natalia V; Carey, Erin M; Oliinyk, Olena S; Nimmerjahn, Axel; Verkhusha, Vladislav V · Nat Commun · 2024

basic_science · Level V

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Abstract

Near-infrared (NIR) probes are highly sought after as fluorescent tags for multicolor cellular and in vivo imaging. Here we develop small NIR fluorescent nanobodies, termed NIR-Fb<sub>LAG16</sub> and NIR-Fb<sub>LAG30</sub>, enabling background-free visualization of various GFP-derived probes and biosensors. We also design a red-shifted variant, NIR-Fb<sub>(718)</sub>, to simultaneously target several antigens within the NIR spectral range. Leveraging the antigen-stabilizing property of the developed NIR-Fbs, we then create two modular systems for precise control of gene expression in GFP-labeled cells. Applying the NIR-Fbs in vivo, we target cells expressing GFP and the calcium biosensor GCaMP6 in the somatosensory cortex of transgenic mice. Simultaneously tracking calcium activity and the reference signal from NIR-Fb<sub>LAG</sub>s bound to GCaMP6 enables ratiometric deep-brain in vivo imaging. Altogether, NIR-Fb<sub>LAG</sub>s present a promising approach for imaging and manipulating various processes in live cells and behaving animals expressing GFP-based probes.

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