Proximity labeling is a powerful approach for detecting protein-protein interactions. Most proximity labeling techniques use a promiscuous biotin ligase (PBL) or a peroxidase fused to a protein of interest, enabling the covalent biotin labelling of proteins and subsequent capture and identification of interacting and neighbouring proteins without the need for the protein complex to remain intact. To date, only few papers report on the use of proximity labeling in plants. Here, we present the results of a systematic study applying a variety of biotin-based proximity labeling approaches in several plant systems using various conditions and bait proteins. We show that TurboID is the most promiscuous variant in several plant model systems and e...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...
Cellular condensates can comprise membrane-less ribonucleoprotein assemblies with liquid-like proper...
Proximity labeling is a powerful approach for detecting protein-protein interactions. Most proximity...
Identifying protein-protein interactions (PPI) is crucial to understand any type of biological proce...
Mapping protein–protein interactions is crucial to understand protein function. Recent advances in p...
The study of protein–protein interactions (PPIs) is fundamental in understanding the unique role of ...
Protein-protein interaction (PPI) networks are key to nearly all aspects of cellular activity. ...
Protein-protein interaction (PPI) networks are key to nearly all aspects of cellular activity. ...
Proximity-dependent biotin identification (BioID) is a recently developed method that allows the ide...
Proximity-dependent biotin identification (BioID) is a recently developed method that allows the ide...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2018.Cataloged from ...
Plant pathogens secrete effector molecules that suppress the plant immune response to facilitate dis...
Plant pathogens secrete effector molecules that suppress the plant immune response to facilitate dis...
Proximity biotinylation based on Escherichia coli BirA enzymes such as BioID (BirA*) and TurboID is ...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...
Cellular condensates can comprise membrane-less ribonucleoprotein assemblies with liquid-like proper...
Proximity labeling is a powerful approach for detecting protein-protein interactions. Most proximity...
Identifying protein-protein interactions (PPI) is crucial to understand any type of biological proce...
Mapping protein–protein interactions is crucial to understand protein function. Recent advances in p...
The study of protein–protein interactions (PPIs) is fundamental in understanding the unique role of ...
Protein-protein interaction (PPI) networks are key to nearly all aspects of cellular activity. ...
Protein-protein interaction (PPI) networks are key to nearly all aspects of cellular activity. ...
Proximity-dependent biotin identification (BioID) is a recently developed method that allows the ide...
Proximity-dependent biotin identification (BioID) is a recently developed method that allows the ide...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2018.Cataloged from ...
Plant pathogens secrete effector molecules that suppress the plant immune response to facilitate dis...
Plant pathogens secrete effector molecules that suppress the plant immune response to facilitate dis...
Proximity biotinylation based on Escherichia coli BirA enzymes such as BioID (BirA*) and TurboID is ...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...
Cellular condensates can comprise membrane-less ribonucleoprotein assemblies with liquid-like proper...