Fluorogenic aptamers are genetically encoded RNA aptamers that bind and induce the fluorescence of otherwise nonfluorescent small molecule dyes. These RNA–fluorophore complexes can be highly fluorescent and useful for RNA visualization and genetically encoded biosensors. Notably, different RNA aptamers can bind the same fluorophore, resulting in complexes that exhibit spectrally distinct fluorescence properties. The basis for spectral tuning of small molecule fluorophores has not yet been studied. Here we explore the mechanism of spectral tuning in three highly related RNA aptamers, Broccoli, Orange Broccoli, and Red Broccoli, each of which binds the DFHO (3,5-difluoro-4-hydroxybenzylidene imidazolinone-2-oxime) fluorophore and generates di...
In addition to the helical nature of double-stranded DNA and RNA, single-stranded oligonucleotides c...
RNA aptamers that bind non-fluorescent dyes and activate their fluorescence are highly sensitive, no...
Fluorescence imaging of intracellular small molecules such as metabolites and signaling molecules is...
Fluorogenic RNA aptamers such as Spinach, Corn, and Mango have provided a practical method for imagi...
ABSTRACT: Genetically encoded fluorescent ribonucleic acids (RNAs) have diverse applications, includ...
Genetically encoded fluorescent ribonucleic acids (RNAs) have diverse applications, including imagin...
RNA aptamers selected to bind fluorophores and activate their fluorescence offer a simple and modula...
The discovery of the GFP-type dye DFHBI that becomes fluorescent upon binding to an RNA aptamer, ter...
Here we describe the development of small molecule-based fluorescent sensors for RNA. The sensors de...
Fluorogenic RNA aptamers are synthetic functional RNAs that specifically bind and activate condition...
RNA aptamers form compact tertiary structures and bind their ligands in specific binding sites. Fluo...
Background: In vitro selection has been shown previously to be a powerful method for isolating nucle...
Fluorogenic RNA aptamers are synthetic functional RNAs that specifically bind and activate condition...
Spinach and Spinach2 are RNA aptamers that can be used for the genetic encoding of fluorescent RNA. ...
The Chili RNA aptamer is a 52 nt long fluorogen-activating RNA aptamer (FLAP) that confers fluoresce...
In addition to the helical nature of double-stranded DNA and RNA, single-stranded oligonucleotides c...
RNA aptamers that bind non-fluorescent dyes and activate their fluorescence are highly sensitive, no...
Fluorescence imaging of intracellular small molecules such as metabolites and signaling molecules is...
Fluorogenic RNA aptamers such as Spinach, Corn, and Mango have provided a practical method for imagi...
ABSTRACT: Genetically encoded fluorescent ribonucleic acids (RNAs) have diverse applications, includ...
Genetically encoded fluorescent ribonucleic acids (RNAs) have diverse applications, including imagin...
RNA aptamers selected to bind fluorophores and activate their fluorescence offer a simple and modula...
The discovery of the GFP-type dye DFHBI that becomes fluorescent upon binding to an RNA aptamer, ter...
Here we describe the development of small molecule-based fluorescent sensors for RNA. The sensors de...
Fluorogenic RNA aptamers are synthetic functional RNAs that specifically bind and activate condition...
RNA aptamers form compact tertiary structures and bind their ligands in specific binding sites. Fluo...
Background: In vitro selection has been shown previously to be a powerful method for isolating nucle...
Fluorogenic RNA aptamers are synthetic functional RNAs that specifically bind and activate condition...
Spinach and Spinach2 are RNA aptamers that can be used for the genetic encoding of fluorescent RNA. ...
The Chili RNA aptamer is a 52 nt long fluorogen-activating RNA aptamer (FLAP) that confers fluoresce...
In addition to the helical nature of double-stranded DNA and RNA, single-stranded oligonucleotides c...
RNA aptamers that bind non-fluorescent dyes and activate their fluorescence are highly sensitive, no...
Fluorescence imaging of intracellular small molecules such as metabolites and signaling molecules is...