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Published on: July 28, 2026
A fluorescence-based high-throughput assay enabling engineering of BsPPS, a unique phenolic compound-phosphorylating
Sheng-Dong Chen1, Hsin-Ya Tsai1, Chen Hsu1
1Department of Agricultural Chemistry, National Taiwan University, Taipei 10617, Taiwan.
Abstract:
To date, enzymatic systems capable of phosphorylating phenolic compounds are rare, and phenolic phosphate synthetase from Bacillus subtilis (BsPPS) is distinguished by its ability to regioselectively phosphorylate a broad range of structurally diverse natural polyphenols, a transformation valuable for improving the aqueous solubility and bioavailability of phytochemicals. However, the lack of an efficient high-throughput screening (HTS) platform has limited its engineering and application. Here, we developed a fluorescence-based HTS assay for rapid estimation of BsPPS activity using umbelliferone as a fluorogenic probe. Phosphorylation of umbelliferone causes pronounced fluorescence quenching, providing an inverse correlation between fluorescence intensity and catalytic activity. The assay was systematically optimized and validated, demonstrating high accuracy, precision, and reproducibility. Application to an error-prone PCR library identified BsPPS variants with improved thermostability while maintaining catalytic activity. Overall, this assay fills a critical methodological gap and provides a practical foundation for future exploration of related phenolic compound-phosphorylating enzymes.

