Bright ligand-activatable fluorescent protein for high-quality multicolor live-cell super-resolution microscopy

  • Kwon, Jiwoong
  • Park, Jong-Seok
  • Kang, Minsu
  • Choi, Soobin
  • Park, Jumi
  • ... Shim, Sang-Hee
  • 외 4명
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초록

We introduce UnaG as a green-to-dark photoswitching fluorescent protein capable of high-quality super-resolution imaging with photon numbers equivalent to the brightest photoswitchable red protein. UnaG only fluoresces upon binding of a fluorogenic metabolite, bilirubin, enabling UV-free reversible photoswitching with easily controllable kinetics and low background under Epi illumination. The on- and off-switching rates are controlled by the concentration of the ligand and the excitation light intensity, respectively, where the dissolved oxygen also promotes the off-switching. The photo-oxidation reaction mechanism of bilirubin in UnaG suggests that the lack of ligand-protein covalent bond allows the oxidized ligand to detach from the protein, emptying the binding cavity for rebinding to a fresh ligand molecule. We demonstrate super-resolution single-molecule localization imaging of various subcellular structures genetically encoded with UnaG, which enables facile labeling and simultaneous multicolor imaging of live cells. UnaG has the promise of becoming a default protein for high-performance super-resolution imaging. Photoconvertible proteins occupy two color channels thereby limiting multicolour localisation microscopy applications. Here the authors present UnaG, a new green-to-dark photoswitching fluorescent protein for super-resolution imaging, whose activation is based on a noncovalent binding with bilirubin.

키워드

BILIRUBINMOLECULESMECHANISMCYTOCHROME-P450DEGRADATIONPERFORMANCEREPORTERPRODUCTSBINDINGTAG
제목
Bright ligand-activatable fluorescent protein for high-quality multicolor live-cell super-resolution microscopy
저자
Kwon, JiwoongPark, Jong-SeokKang, MinsuChoi, SoobinPark, JumiKim, Gyeong TaeLee, ChangwookCha, SangwonRhee, Hyun-WooShim, Sang-Hee
DOI
10.1038/s41467-019-14067-4
발행일
2020-01-14
유형
Article
저널명
Nature Communications
11
1