The interactions between metabolites and proteins constitute crucial events in cell signaling and metabolism. In recent years, large-scale proteomics techniques have emerged to identify and characterize protein-metabolite interactions. However, their implementation in plants is generally lagging behind, preventing a complete understanding of the regulatory mechanisms governing plant physiology. Recently, a novel approach to identify metabolite-binding proteins, namely, limited proteolysis-coupled mass spectrometry (LiP-MS), was developed originally for microbial proteomes. Here, we present an adapted and accessible version of the LiP-MS protocol for use in plants. Plant proteomes are extracted and incubated with the metabolite of interest o...
Plant growth and development are regulated by hormones and the associated signalling pathways share ...
Owing to the low abundance of signaling proteins and transcription factors, their protein complexes ...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...
The interaction between plants and pathogenic microorganisms is a multifaceted process mediated by b...
Abstract Enzyme-enzyme interactions can be discovered by affinity purification mass spectrometry (AP...
Large-scale analyses of proteins and metabolites are intimately bound to advancements in MS technolo...
Enzyme‐enzyme interactions can be discovered by affinity purification mass spectrometry (AP‐MS) unde...
Proteolysis is a central regulatory mechanism of protein homeostasis and protein function that affec...
Proteomics covers the systematic analysis of proteins expressed by a genome, from the identification...
Interaction between metabolites and proteins drives cellular regulatory processes within and between...
The development of omics has enabled the genome-wide exploration of all kinds of biological processe...
Transcriptomic and proteomic technologies are generating a wealth of data that are frequently used b...
Abstract Background Multidimensional protein identification technology (MudPIT)-based shot-gun prote...
Protein post-translational modifications (PTMs) are among the fastest and earliest of plant response...
The study of protein–protein interactions (PPIs) is fundamental in understanding the unique role of ...
Plant growth and development are regulated by hormones and the associated signalling pathways share ...
Owing to the low abundance of signaling proteins and transcription factors, their protein complexes ...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...
The interaction between plants and pathogenic microorganisms is a multifaceted process mediated by b...
Abstract Enzyme-enzyme interactions can be discovered by affinity purification mass spectrometry (AP...
Large-scale analyses of proteins and metabolites are intimately bound to advancements in MS technolo...
Enzyme‐enzyme interactions can be discovered by affinity purification mass spectrometry (AP‐MS) unde...
Proteolysis is a central regulatory mechanism of protein homeostasis and protein function that affec...
Proteomics covers the systematic analysis of proteins expressed by a genome, from the identification...
Interaction between metabolites and proteins drives cellular regulatory processes within and between...
The development of omics has enabled the genome-wide exploration of all kinds of biological processe...
Transcriptomic and proteomic technologies are generating a wealth of data that are frequently used b...
Abstract Background Multidimensional protein identification technology (MudPIT)-based shot-gun prote...
Protein post-translational modifications (PTMs) are among the fastest and earliest of plant response...
The study of protein–protein interactions (PPIs) is fundamental in understanding the unique role of ...
Plant growth and development are regulated by hormones and the associated signalling pathways share ...
Owing to the low abundance of signaling proteins and transcription factors, their protein complexes ...
Phytohormones tightly regulate plant growth by integrating changing environmental and developmental ...