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A G-quadruplex-containing RNA activates fluorescence in a GFP-like fluorophore.


ABSTRACT: Spinach is an in vitro-selected RNA aptamer that binds a GFP-like ligand and activates its green fluorescence. Spinach is thus an RNA analog of GFP and has potentially widespread applications for in vivo labeling and imaging. We used antibody-assisted crystallography to determine the structures of Spinach both with and without bound fluorophore at 2.2-Å and 2.4-Å resolution, respectively. Spinach RNA has an elongated structure containing two helical domains separated by an internal bulge that folds into a G-quadruplex motif of unusual topology. The G-quadruplex motif and adjacent nucleotides comprise a partially preformed binding site for the fluorophore. The fluorophore binds in a planar conformation and makes extensive aromatic stacking and hydrogen bond interactions with the RNA. Our findings provide a foundation for structure-based engineering of new fluorophore-binding RNA aptamers.

SUBMITTER: Huang H 

PROVIDER: S-EPMC4104137 | biostudies-literature | 2014 Aug

REPOSITORIES: biostudies-literature

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A G-quadruplex-containing RNA activates fluorescence in a GFP-like fluorophore.

Huang Hao H   Suslov Nikolai B NB   Li Nan-Sheng NS   Shelke Sandip A SA   Evans Molly E ME   Koldobskaya Yelena Y   Rice Phoebe A PA   Piccirilli Joseph A JA  

Nature chemical biology 20140622 8


Spinach is an in vitro-selected RNA aptamer that binds a GFP-like ligand and activates its green fluorescence. Spinach is thus an RNA analog of GFP and has potentially widespread applications for in vivo labeling and imaging. We used antibody-assisted crystallography to determine the structures of Spinach both with and without bound fluorophore at 2.2-Å and 2.4-Å resolution, respectively. Spinach RNA has an elongated structure containing two helical domains separated by an internal bulge that fo  ...[more]

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