SummaryStudies of protein-protein interactions deep in organs and in whole mammals have been hindered by a lack of genetically encoded fluorescent probes in near-infrared region for which mammalian tissues are the most transparent. We have used a near-infrared fluorescent protein iRFP engineered from a bacterial phytochrome as the template to develop an in vivo split fluorescence complementation probe. The domain architecture-based rational design resulted in an iSplit reporter with the spectra optimal for whole-body imaging, high photostability, and high complementation contrast, which compares favorably to that of other available split fluorescent protein-based probes. Successful visualization of interaction of two known protein partners ...
Spatiotemporal characterization of protein protein interactions (PPIs) is essential in determining t...
Brighter near-infrared (NIR) fluorescent proteins (FPs) are required for multicolor microscopy and d...
Genetically encoded fluorescent markers have revolutionized cell and molecular biology due to their...
SummaryStudies of protein-protein interactions deep in organs and in whole mammals have been hindere...
Since mammalian tissue is relatively transparent to near-infrared (NIR) light, NIR fluorescentprotei...
Near-infrared fluorescent proteins are in high demand for in vivo imaging. We developed four spectra...
High transparency, low light-scattering, and low autofluorescence of mammalian tissues in the near-i...
Bright monomeric near-infrared (NIR) fluorescent proteins (FPs) are in high demand as protein tags f...
Protein interactions integrate stimuli from different signaling pathways and developmental programs....
Fluorescent proteins (FPs) have revolutionized our ability to image biological systems. However, poo...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
Fluorescent proteins (FPs) engineered from bacterial phytochromes attract attention as probes for in...
miRFP670nano3 offers improved near-infrared imaging and was used to develop fluorescent nanobodies w...
While the use of bioluminescent proteins for molecular imaging is a powerful technology to further o...
Finding a trustworthy method to recognize protein-protein interactions is going to be a big task in ...
Spatiotemporal characterization of protein protein interactions (PPIs) is essential in determining t...
Brighter near-infrared (NIR) fluorescent proteins (FPs) are required for multicolor microscopy and d...
Genetically encoded fluorescent markers have revolutionized cell and molecular biology due to their...
SummaryStudies of protein-protein interactions deep in organs and in whole mammals have been hindere...
Since mammalian tissue is relatively transparent to near-infrared (NIR) light, NIR fluorescentprotei...
Near-infrared fluorescent proteins are in high demand for in vivo imaging. We developed four spectra...
High transparency, low light-scattering, and low autofluorescence of mammalian tissues in the near-i...
Bright monomeric near-infrared (NIR) fluorescent proteins (FPs) are in high demand as protein tags f...
Protein interactions integrate stimuli from different signaling pathways and developmental programs....
Fluorescent proteins (FPs) have revolutionized our ability to image biological systems. However, poo...
SummaryNear-infrared fluorescent proteins (NIR FPs) engineered from bacterial phytochromes (BphPs) a...
Fluorescent proteins (FPs) engineered from bacterial phytochromes attract attention as probes for in...
miRFP670nano3 offers improved near-infrared imaging and was used to develop fluorescent nanobodies w...
While the use of bioluminescent proteins for molecular imaging is a powerful technology to further o...
Finding a trustworthy method to recognize protein-protein interactions is going to be a big task in ...
Spatiotemporal characterization of protein protein interactions (PPIs) is essential in determining t...
Brighter near-infrared (NIR) fluorescent proteins (FPs) are required for multicolor microscopy and d...
Genetically encoded fluorescent markers have revolutionized cell and molecular biology due to their...