Protein–RNA complex formation is at the center of RNA metabolism and leads to the modulation of protein and RNA functions. We propose here a step-by-step guide to investigate these interactions including the identification of the protein and RNA parts involved in complex formation, the determination of the affinity of the complex and the characterization of the protein–RNA interface at amino acid and nucleotide level. Moreover, we briefly review the methods that are the most often used to obtain this information using primarily examples from our lab and finally mention what we perceive as the next challenges in the field
A data set of 89 protein-RNA complexes has been extracted from the Protein Data Bank, and the nuclei...
Ribonucleoprotein (RNP) complexes play important roles in the cell by mediating basic cellular proce...
Ribonucleoprotein (RNP) complexes play important roles in the cell by mediating basic cellular proce...
RNA is the key player in many cellular processes such as signal transduction, replication, transport...
The interactions between proteins and nucleic acids regulate gene expression at transcriptional, pos...
RNA-protein interactions are vital to many biological processes such as translation and splicing. An...
SummaryRNA-protein (RNP) interactions generally are required for RNA function. At least 5% of human ...
Protein–RNA complexes play many important roles in diverse cellular functions. They are involved in ...
Protein–RNA interactions are at the heart of cell regulation. From transcription, processing, storag...
A detailed computational analysis of 32 protein-RNA complexes is presented. A number of physical and...
AbstractStructural analysis of protein–RNA complexes is labor-intensive, yet provides insight into t...
RNA binding proteins (RBPs) are key players in the regulation of gene expression. In this chapter we...
Structural information about protein-RNA complexes supports the understanding of crucial recognition...
RNA–protein interactions frame post-transcriptional regulatory networks and modulate transcription a...
A data set of 89 protein¿RNA complexes has been extracted from the Protein Data Bank, and the nuclei...
A data set of 89 protein-RNA complexes has been extracted from the Protein Data Bank, and the nuclei...
Ribonucleoprotein (RNP) complexes play important roles in the cell by mediating basic cellular proce...
Ribonucleoprotein (RNP) complexes play important roles in the cell by mediating basic cellular proce...
RNA is the key player in many cellular processes such as signal transduction, replication, transport...
The interactions between proteins and nucleic acids regulate gene expression at transcriptional, pos...
RNA-protein interactions are vital to many biological processes such as translation and splicing. An...
SummaryRNA-protein (RNP) interactions generally are required for RNA function. At least 5% of human ...
Protein–RNA complexes play many important roles in diverse cellular functions. They are involved in ...
Protein–RNA interactions are at the heart of cell regulation. From transcription, processing, storag...
A detailed computational analysis of 32 protein-RNA complexes is presented. A number of physical and...
AbstractStructural analysis of protein–RNA complexes is labor-intensive, yet provides insight into t...
RNA binding proteins (RBPs) are key players in the regulation of gene expression. In this chapter we...
Structural information about protein-RNA complexes supports the understanding of crucial recognition...
RNA–protein interactions frame post-transcriptional regulatory networks and modulate transcription a...
A data set of 89 protein¿RNA complexes has been extracted from the Protein Data Bank, and the nuclei...
A data set of 89 protein-RNA complexes has been extracted from the Protein Data Bank, and the nuclei...
Ribonucleoprotein (RNP) complexes play important roles in the cell by mediating basic cellular proce...
Ribonucleoprotein (RNP) complexes play important roles in the cell by mediating basic cellular proce...