bioRxiv · 10.1101/2020.11.04.368654
Genetically encoded ratiometric biosensor for probing lysosomal pH in mammalian cells and C. elegans
Abstract
Lysosomes are important sites for macromolecular degradation, defined by an acidic lumenal pH of [~]4.5. To better understand lysosomal pH, we designed a novel, genetically encoded, fluorescent protein (FP) based pH biosensor called FIRE-pHLy (Fluorescence Indicator REporting pH in Lysosomes). This biosensor was targeted to lysosomes with lysosomal-associated membrane protein 1 (LAMP1) and reported lumenal pH between 3.5 and 6.0 with monomeric teal fluorescent protein 1 (mTFP1), a bright cyan pH sensitive FP variant with a pKa of 4.3. Ratiometric quantification was enabled with cytosolically oriented mCherry using high-content quantitative imaging. We expressed FIRE-pHLy in several cellular models and quantified the alkalinizing response to bafilomycin A1, a specific V-ATPase inhibitor. In summary, we have engineered FIRE-pHLy, a specific, robust and versatile lysosomal pH biosensor that has broad applications for investigating pH dynamics in aging and lysosome-related diseases, as well as in lysosome-based drug discovery.
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Chin, M. Y., Patwardhan, A. R., Ang, K.-H., Wang, A. L., Alquezar, C., Welch, M., Grabe, M., Arkin, M. R., Kao, A. W.. 2020-11-04. Genetically encoded ratiometric biosensor for probing lysosomal pH in mammalian cells and C. elegans. https://doi.org/10.1101/2020.11.04.368654
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