Development of a Photostable pH Biosensor Based on mStayGold

Fluorescent proteins (FPs) that are pH-sensitive play a crucial role in investigating pH-related cellular processes, such as endocytosis and exocytosis. Existing pH-sensitive FPs generated from Aequorea victoria green fluorescent protein (GFP), such as superecliptic pHluorin (SEP) and Lime, have been widely employed to study these processes, but suffer from low photostability. Here, we report the development and characteristics of serapH, a genetically encodable pH biosensor with improved photostability compared to GFP analogues, which we generated using mStayGold as a scaffold. To aid in the development of serapH, we developed a method for screening pH-sensitive FP variants by directly evaluating both brightness and pH sensitivity in bacterial colonies on agar. This significantly increased the number of colonies that could be screened per round and reduced the time needed per round. The photostability of serapH should improve spatiotemporal resolution by increasing tolerance to higher excitation intensities and longer imaging durations, thereby expanding the range of applications of pH-sensitive FPs.

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Publication Details

Journal
ChemBioChem
Published
2026-08-26
DOI
https://doi.org/10.1002/cbic.70512
Primary Topic
Advanced Fluorescence Microscopy Techniques
Type
article
Field-Weighted Citation Impact
0.00

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article

Development of a Photostable pH Biosensor Based on mStayGold

Takuya Terai, Tom Carter, Ruben Bierings, Kelvin Tsao et al.
ChemBioChem
Advanced Fluorescence Microscopy Techniques
article

Development of a Photostable pH Biosensor Based on mStayGold

Takuya Terai, Tom Carter, Ruben Bierings, Kelvin Tsao, Michael Chang, Robert E. Campbell, Kei Takahashi, Lilly Nash
article en

Abstract

Fluorescent proteins (FPs) that are pH-sensitive play a crucial role in investigating pH-related cellular processes, such as endocytosis and exocytosis. Existing pH-sensitive FPs generated from Aequorea victoria green fluorescent protein (GFP), such as superecliptic pHluorin (SEP) and Lime, have been widely employed to study these processes, but suffer from low photostability. Here, we report the development and characteristics of serapH, a genetically encodable pH biosensor with improved photostability compared to GFP analogues, which we generated using mStayGold as a scaffold. To aid in the development of serapH, we developed a method for screening pH-sensitive FP variants by directly evaluating both brightness and pH sensitivity in bacterial colonies on agar. This significantly increased the number of colonies that could be screened per round and reduced the time needed per round. The photostability of serapH should improve spatiotemporal resolution by increasing tolerance to higher excitation intensities and longer imaging durations, thereby expanding the range of applications of pH-sensitive FPs.

ChemBioChemVol. 27(16)
Royal Veterinary College (GB), St George's, University of London (GB), Erasmus MC (NL), Japan Science and Technology Agency (JP), Université Laval (CA), The University of Tokyo (JP)
Georgia Space Grant Consortium, Japan Society for the Promotion of Science, Japan Science and Technology Agency, Core Research for Evolutional Science and Technology
Openalex Percentile: Top 81%
Advanced Fluorescence Microscopy Techniques
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