The combination of high-throughput sequencing and in vivo crosslinking approaches leads to the progressive uncovering of the complex interdependence between cellular transcriptome and proteome. Yet, the molecular determinants governing interactions in protein-RNA networks are not well understood. Here we investigated the relationship between the structure of an RNA and its ability to interact with proteins. Analysing in silico, in vitro and in vivo experiments, we find that the amount of double-stranded regions in an RNA correlates with the number of protein contacts. This relationship —which we call structure-driven protein interactivity— allows classification of RNA types, plays a role in gene regulation and could have implications for th...
The biodiversity of the RNA world has been underestimated for decades. RNA molecules are key buildin...
A data set of 89 protein-RNA complexes has been extracted from the Protein Data Bank, and the nuclei...
Intrinsically disordered regions (IDRs) and protein (IDPs) are highly flexible owing to their lack o...
The combination of high-throughput sequencing and in vivo crosslinking approaches leads to the progr...
Changes in the abundance of protein and RNA molecules can impair the formation of complexes in the c...
RNA-protein interactions are vital to many biological processes such as translation and splicing. An...
Despite what was previously considered, the role of RNA is not only to carry the genetic informatio...
Complex RNA–RNA interactions are increasingly known to play key roles in numerous biological process...
Many RNA molecules are recognized by proteins that interact preferen-tially with a particular RNA mo...
A detailed computational analysis of 32 protein-RNA complexes is presented. A number of physical and...
Protein-RNA interactions are emerging as an important functional element in the regulation of gene e...
The structural flexibility of RNA allows it to exist in several shapes and sizes. Thus, RNA is funct...
The ability for RNA to adopt multiple structures from one sequence presents challenges when predicti...
The development of genome-wide analysis tools has prompted global investigation of the gene expressi...
Proteins and RNAs are two of the most versatile macromolecules that carry out almost all functions w...
The biodiversity of the RNA world has been underestimated for decades. RNA molecules are key buildin...
A data set of 89 protein-RNA complexes has been extracted from the Protein Data Bank, and the nuclei...
Intrinsically disordered regions (IDRs) and protein (IDPs) are highly flexible owing to their lack o...
The combination of high-throughput sequencing and in vivo crosslinking approaches leads to the progr...
Changes in the abundance of protein and RNA molecules can impair the formation of complexes in the c...
RNA-protein interactions are vital to many biological processes such as translation and splicing. An...
Despite what was previously considered, the role of RNA is not only to carry the genetic informatio...
Complex RNA–RNA interactions are increasingly known to play key roles in numerous biological process...
Many RNA molecules are recognized by proteins that interact preferen-tially with a particular RNA mo...
A detailed computational analysis of 32 protein-RNA complexes is presented. A number of physical and...
Protein-RNA interactions are emerging as an important functional element in the regulation of gene e...
The structural flexibility of RNA allows it to exist in several shapes and sizes. Thus, RNA is funct...
The ability for RNA to adopt multiple structures from one sequence presents challenges when predicti...
The development of genome-wide analysis tools has prompted global investigation of the gene expressi...
Proteins and RNAs are two of the most versatile macromolecules that carry out almost all functions w...
The biodiversity of the RNA world has been underestimated for decades. RNA molecules are key buildin...
A data set of 89 protein-RNA complexes has been extracted from the Protein Data Bank, and the nuclei...
Intrinsically disordered regions (IDRs) and protein (IDPs) are highly flexible owing to their lack o...