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A general mechanism of photoconversion of green-to-red fluorescent proteins based on blue and infrared light reduces phototoxicity in live-cell single-molecule imaging.

Turkowyd B, Balinovic A, Virant D, Golz Carnero HG, Caldana F, Endesfelder M, Bourgeois D, Endesfelder U
Angew Chem Int Ed Engl. 2017 Jun 2. doi: 10.1002/anie.201702870. (Link opens in a new window) PubMed (Link opens in a new window) Article

Plasmids from Article

ID Plasmid Purpose
98571pRSETa-mEos3.2-A69Tphotoconvertible fluorescent protein mEos3.2-A69T in pRSetA plasmid, photoconvertible by primed conversion mechanism, bacterial overexpression, sequence is codon optimised for E. coli
98572pRSETa-mEos4b-V69Tphotoconvertible fluorescent protein mEos4b-V69T in pRSetA plasmid, photoconvertible by primed conversion mechanism, bacterial overexpression
98574pRSETa-mKikGR-V69Tphotoconvertible fluorescent protein mKikGR-V69T in pRSetA plasmid, photoconvertible by primed conversion mechanism, bacterial overexpression, sequence is codon optimised for E. coli
98577pRSETa-mMaple3-V157Iphotoconvertible fluorescent protein mMaple3-V157I in pRSetA plasmid, photoconvertible by primed conversion mechanism, bacterial overexpression, sequence is codon optimised for E. coli
98578pRSETb-pcDronpa2-A69Tphotoconvertible fluorescent protein pcDronpa2-A69T in pRSetB plasmid, photoconvertible by primed conversion mechanism, bacterial overexpression

Antibodies from Article