Simple plug-and-playable fluorescent cell imaging modular toolkits are established using the bacterial superglue SpyTag/SpyCatcher protein ligation system. A variety of affibody-fluorescent protein conjugates (AFPCs) are post-translationally generated via the isopeptide bond formation, and each AFPC effectively recognizes and binds to its targeting cells, visualizing them with selective colors on demand.close
Reliable methods to det. the subcellular localization of bacterial proteins are needed for the study...
Imaging of live cells has been revolutionized by genetically encoded fluorescent probes, most famous...
Self-associating split fluorescent proteins (FPs) are split FPs whose two fragments spontaneously as...
The selective detection of specific cells of interest and their effective visualization is important...
The selective detection of specific cells of interest and their effective visualization is important...
SpyTag is a peptide that forms a spontaneous amide bond with its protein partner SpyCatcher. This pr...
The use of fluorescent protein fusions has revolutionised our understanding of bacterial cell struct...
Fluorogenic probes are useful as molecular tools in chemical biology because they can overcome noise...
The SpyCatcher-SpyTag system was developed seven years ago as a method for protein ligation. It is b...
Nanosensors are nanometer-sized particles that can sense their environment and report about specific...
Self-associating split fluorescent proteins (SAsFPs) have been widely used for labeling proteins, vi...
Protein cage nanoparticles are widely used as targeted delivery nanoplatforms, because they have wel...
Autocatalytic intramolecular isopeptide bonds have been found in nature in certain gram-positive bac...
Background Antibody-fluorophore conjugates are invaluable reagents used in contemporary molecular c...
Lytic phages form a powerful platform for the display of large cDNA libraries and offer the possibil...
Reliable methods to det. the subcellular localization of bacterial proteins are needed for the study...
Imaging of live cells has been revolutionized by genetically encoded fluorescent probes, most famous...
Self-associating split fluorescent proteins (FPs) are split FPs whose two fragments spontaneously as...
The selective detection of specific cells of interest and their effective visualization is important...
The selective detection of specific cells of interest and their effective visualization is important...
SpyTag is a peptide that forms a spontaneous amide bond with its protein partner SpyCatcher. This pr...
The use of fluorescent protein fusions has revolutionised our understanding of bacterial cell struct...
Fluorogenic probes are useful as molecular tools in chemical biology because they can overcome noise...
The SpyCatcher-SpyTag system was developed seven years ago as a method for protein ligation. It is b...
Nanosensors are nanometer-sized particles that can sense their environment and report about specific...
Self-associating split fluorescent proteins (SAsFPs) have been widely used for labeling proteins, vi...
Protein cage nanoparticles are widely used as targeted delivery nanoplatforms, because they have wel...
Autocatalytic intramolecular isopeptide bonds have been found in nature in certain gram-positive bac...
Background Antibody-fluorophore conjugates are invaluable reagents used in contemporary molecular c...
Lytic phages form a powerful platform for the display of large cDNA libraries and offer the possibil...
Reliable methods to det. the subcellular localization of bacterial proteins are needed for the study...
Imaging of live cells has been revolutionized by genetically encoded fluorescent probes, most famous...
Self-associating split fluorescent proteins (FPs) are split FPs whose two fragments spontaneously as...