Fluorogenic RNA aptamers bind and activate the fluorescence of otherwise nonfluorescent dyes. However, fluorogenic aptamers are limited by the small number of fluorogenic dyes suitable for use in live cells. In this communication, fluorogenic proteins whose fluorescence is activated by RNA aptamers are described. Fluorogenic proteins are highly unstable until they bind RNA aptamers inserted into messenger RNAs, resulting in fluorescent RNA–protein complexes that enable live imaging of mRNA in living cells
Genetically-encoded fluorescent proteins have become an essential tool, and researchers today have a...
Imaging the behavior of RNA in a living cell is a powerful means for understanding RNA functions and...
Fluorescent light-up RNA aptamers (FLAPs) have become promising tools for visualizing RNAs in living...
Fluorogenic RNA aptamers bind and activate the fluorescence of otherwise nonfluorescent dyes. Howeve...
The repertoire of RNAs transcribed and processed within living cells is of extraordinary complexity....
An RNA-based fluorogenic module consists of a light-up RNA aptamer able to specifically interact wit...
Messenger RNA (mRNA) plays a critical role in cellular growth and development. However, there have b...
The cellular functions of RNA are not limited to their role as blueprints for protein synthesis. In ...
Fluorescence imaging of cellular components and biomolecules have given numerous insights in biomedi...
Direct cellular imaging of the localization and dynamics of biomolecules helps to understand their f...
We show that the difficulties in imaging the dynamics of protein expression in live bacterial cells ...
Knowledge about ribonucleic acids (RNAs) and their roles has recently been expanded by extensive stu...
Live cell RNA imaging using genetically encoded fluorescent labels is an important tool for monitori...
The central role of RNA in living systems made it highly desirable to have noninvasive and sensitive...
Fluorescence imaging is a powerful technique for the real-time noninvasive monitoring of protein dyn...
Genetically-encoded fluorescent proteins have become an essential tool, and researchers today have a...
Imaging the behavior of RNA in a living cell is a powerful means for understanding RNA functions and...
Fluorescent light-up RNA aptamers (FLAPs) have become promising tools for visualizing RNAs in living...
Fluorogenic RNA aptamers bind and activate the fluorescence of otherwise nonfluorescent dyes. Howeve...
The repertoire of RNAs transcribed and processed within living cells is of extraordinary complexity....
An RNA-based fluorogenic module consists of a light-up RNA aptamer able to specifically interact wit...
Messenger RNA (mRNA) plays a critical role in cellular growth and development. However, there have b...
The cellular functions of RNA are not limited to their role as blueprints for protein synthesis. In ...
Fluorescence imaging of cellular components and biomolecules have given numerous insights in biomedi...
Direct cellular imaging of the localization and dynamics of biomolecules helps to understand their f...
We show that the difficulties in imaging the dynamics of protein expression in live bacterial cells ...
Knowledge about ribonucleic acids (RNAs) and their roles has recently been expanded by extensive stu...
Live cell RNA imaging using genetically encoded fluorescent labels is an important tool for monitori...
The central role of RNA in living systems made it highly desirable to have noninvasive and sensitive...
Fluorescence imaging is a powerful technique for the real-time noninvasive monitoring of protein dyn...
Genetically-encoded fluorescent proteins have become an essential tool, and researchers today have a...
Imaging the behavior of RNA in a living cell is a powerful means for understanding RNA functions and...
Fluorescent light-up RNA aptamers (FLAPs) have become promising tools for visualizing RNAs in living...