The central role of RNA in living systems made it highly desirable to have noninvasive and sensitive technologies allowing for imaging the synthesis and the location of these molecules in living cells. This need motivated the development of small pro-fluorescent molecules called "fluorogens" that become fluorescent upon binding to genetically encodable RNAs called "light-up aptamers." Yet, the development of these fluorogen/light-up RNA pairs is a long and thorough process starting with the careful design of the fluorogen and pursued by the selection of a specific and efficient synthetic aptamer. This chapter summarizes the main design and the selection strategies used up to now prior to introducing the main pairs. Then, the vast applicatio...
Here we describe the development of small molecule-based fluorescent sensors for RNA. The sensors de...
Despite having many key roles in cellular biology, directly imaging biologically important RNAs has ...
In recent years, there has been an explosion of SELEX-evolved fluorescent RNA aptamers, such as Spin...
An RNA-based fluorogenic module consists of a light-up RNA aptamer able to specifically interact wit...
An RNA-based fluorogenic module consists of a light-up RNA aptamer able to specifically interact wit...
The cellular functions of RNA are not limited to their role as blueprints for protein synthesis. In ...
The cellular functions of RNA are not limited to their role as blueprints for protein synthesis. In ...
Visualizing RNA localization and dynamics in living cells provides new insights into RNA biology. Ge...
AbstractFluorescence correlation spectroscopy (FCS) is suitable for the detection of fluorescent mol...
RNA is a key molecule in gene expression and its regulation. Therefore, being able to monitor RNA th...
Fluorescence imaging of cellular components and biomolecules have given numerous insights in biomedi...
Background: In vitro selection has been shown previously to be a powerful method for isolating nucle...
Genetically-encoded fluorescent proteins have become an essential tool, and researchers today have a...
Recent successes in construction of light-up RNA aptamers allowed fluorescence-based live-cell imagi...
Here we describe the development of small molecule-based fluorescent sensors for RNA. The sensors de...
Here we describe the development of small molecule-based fluorescent sensors for RNA. The sensors de...
Despite having many key roles in cellular biology, directly imaging biologically important RNAs has ...
In recent years, there has been an explosion of SELEX-evolved fluorescent RNA aptamers, such as Spin...
An RNA-based fluorogenic module consists of a light-up RNA aptamer able to specifically interact wit...
An RNA-based fluorogenic module consists of a light-up RNA aptamer able to specifically interact wit...
The cellular functions of RNA are not limited to their role as blueprints for protein synthesis. In ...
The cellular functions of RNA are not limited to their role as blueprints for protein synthesis. In ...
Visualizing RNA localization and dynamics in living cells provides new insights into RNA biology. Ge...
AbstractFluorescence correlation spectroscopy (FCS) is suitable for the detection of fluorescent mol...
RNA is a key molecule in gene expression and its regulation. Therefore, being able to monitor RNA th...
Fluorescence imaging of cellular components and biomolecules have given numerous insights in biomedi...
Background: In vitro selection has been shown previously to be a powerful method for isolating nucle...
Genetically-encoded fluorescent proteins have become an essential tool, and researchers today have a...
Recent successes in construction of light-up RNA aptamers allowed fluorescence-based live-cell imagi...
Here we describe the development of small molecule-based fluorescent sensors for RNA. The sensors de...
Here we describe the development of small molecule-based fluorescent sensors for RNA. The sensors de...
Despite having many key roles in cellular biology, directly imaging biologically important RNAs has ...
In recent years, there has been an explosion of SELEX-evolved fluorescent RNA aptamers, such as Spin...