| Literature DB >> 33938061 |
Cheng Chen1, Sean R Tachibana1, Nadezhda S Baleeva2, Ivan N Myasnyanko2, Alexey M Bogdanov2, Alexey S Gavrikov2, Alexander S Mishin2, Kseniya K Malyshevskaya2, Mikhail S Baranov2,3, Chong Fang1.
Abstract
Fluorescence-activating proteins (FAPs) that bind a chromophore and activate its fluorescence have gained popularity in bioimaging. The fluorescence-activating and absorption-shifting tag (FAST) is a light-weight FAP that enables fast reversible fluorogen binding, thus advancing multiplex and super-resolution imaging. However, the rational design of FAST-specific fluorogens with large fluorescence enhancement (FE) remains challenging. Herein, a new fluorogen directly engineered from green fluorescent protein (GFP) chromophore by a unique double-donor-one-acceptor strategy, which exhibits an over 550-fold FE upon FAST binding and a high extinction coefficient of approximately 100,000 M-1 cm-1 , is reported. Correlation analysis of the excited state nonradiative decay rates and environmental factors reveal that the large FE is caused by nonpolar protein-fluorogen interactions. Our deep insights into structure-function relationships could guide the rational design of bright fluorogens for live-cell imaging with extended spectral properties such as redder emissions.Entities:
Keywords: biomimetics; femtosecond transient absorption; fluorescence enhancement; multivariable analysis; yellow fluorogen design
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Year: 2021 PMID: 33938061 DOI: 10.1002/chem.202101250
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236