Green-to-red photoconvertible Dronpa mutant for multimodal super-resolution fluorescence microscopy
Benjamien Moeyaert, Ngan Nguyen Bich, Elke De Zitter, Susana Rocha, Koen Clays, Hideaki Mizuno, Luc van Meervelt, Johan Hofkens, Peter Dedecker (see publication in Journal )Abstract
Advanced imaging techniques crucially depend on the labels used. In this work, we present the structure-guided design of a fluorescent protein that displays both reversibly photochromic and green-to-red photoconversion behavior. We first designed ffDronpa, a mutant of the photochromic fluorescent protein Dronpa that matures up to three times faster while retaining its interesting photochromic features. Using a combined evolutionary and structure-driven rational design strategy, we developed a green-to-red photoconvertible ffDronpa mutant, called pcDronpa, and explored different optimization strategies that resulted in its improved version, pcDronpa2. This fluorescent probe combines a high brightness with low photobleaching and photoblinking. We herein show that, despite its tetrameric nature, pcDronpa2 allows for multimodal subdiffraction imaging by sequentially imaging a given sample using both super-resolution fluctuation imaging and localization microscopy.