Protein labeling for live cell fluorescence microscopy with a highly photostable renewable signal

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Abstract

We present protein-PAINT-the implementation of the general principles of PAINT (Point Accumulation for Imaging in Nanoscale Topography) for live-cell protein labeling. Our method employs the specific binding of cell-permeable fluorogenic dyes to genetically encoded protein tags. We engineered three mutants of the bacterial lipocalin Blc that possess different affinities to a fluorogenic dye and exhibit a strong increase in fluorescence intensity upon binding. This allows for rapid labeling and washout of intracellular targets on a time scale from seconds to a few minutes. We demonstrate an order of magnitude higher photostability of the fluorescence signal in comparison with spectrally similar fluorescent proteins. Protein-PAINT ensures prolonged super-resolution fluorescence microscopy of living cells in both single molecule detection and stimulated emission depletion regimes.

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Bozhanova, N. G., Baranov, M. S., Klementieva, N. V., Sarkisyan, K. S., Gavrikov, A. S., Yampolsky, I. V., … Mishin, A. S. (2017). Protein labeling for live cell fluorescence microscopy with a highly photostable renewable signal. Chemical Science, 8(10), 7138–7142. https://doi.org/10.1039/c7sc01628j

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