Protein–RNA interactions play important roles in a wide variety of cellular processes, ranging from transcriptional and posttranscriptional regulation of genes to host defense against pathogens. In this chapter we present the computational approach catRAPID to predict protein–RNA interactions and discuss how it could be used to find trends in ribonucleoprotein networks. We envisage that the combination of computational and experimental approaches will be crucial to unravel the role of coding and noncoding RNAs in protein networks
Motivation: Recent technological advances revealed that an unexpected large number of proteins inter...
Only a small fraction of the human transcriptome (∼1%) encodes proteins, but a large portion of tran...
Increasing evidence indicates that RNA plays an active role in a number of neurodegenerative disease...
Protein–RNA interactions play important roles in a wide variety of cellular processes, ranging from ...
Protein–RNA interactions play important roles in a wide variety of cellular processes, ranging from ...
Ribonucleoprotein interactions play important roles in a wide variety of cellular processes, ranging...
Coding and non-coding RNAs associate with proteins to perform important functions in the cell. Prote...
RNA-protein interactions are important in a wide variety of cellular and developmental processes. Re...
Despite what was previously considered, the role of RNA is not only to carry the genetic informatio...
Despite what was previously considered, the role of RNA is not only to carry the genetic informatio...
Despite what was previously considered, the role of RNA is not only to carry the genetic informatio...
Interactions between proteins and RNA are at the base of numerous cellular regulatory and functional...
Protein-RNA interactions are at the heart of cell regulation. From transcription, processing, storag...
Background: RNA-binding proteins regulate a number of cellular processes, including synthesis, foldi...
RNA-binding proteins (RBPs) play important roles in the control of gene expression and the coordinat...
Motivation: Recent technological advances revealed that an unexpected large number of proteins inter...
Only a small fraction of the human transcriptome (∼1%) encodes proteins, but a large portion of tran...
Increasing evidence indicates that RNA plays an active role in a number of neurodegenerative disease...
Protein–RNA interactions play important roles in a wide variety of cellular processes, ranging from ...
Protein–RNA interactions play important roles in a wide variety of cellular processes, ranging from ...
Ribonucleoprotein interactions play important roles in a wide variety of cellular processes, ranging...
Coding and non-coding RNAs associate with proteins to perform important functions in the cell. Prote...
RNA-protein interactions are important in a wide variety of cellular and developmental processes. Re...
Despite what was previously considered, the role of RNA is not only to carry the genetic informatio...
Despite what was previously considered, the role of RNA is not only to carry the genetic informatio...
Despite what was previously considered, the role of RNA is not only to carry the genetic informatio...
Interactions between proteins and RNA are at the base of numerous cellular regulatory and functional...
Protein-RNA interactions are at the heart of cell regulation. From transcription, processing, storag...
Background: RNA-binding proteins regulate a number of cellular processes, including synthesis, foldi...
RNA-binding proteins (RBPs) play important roles in the control of gene expression and the coordinat...
Motivation: Recent technological advances revealed that an unexpected large number of proteins inter...
Only a small fraction of the human transcriptome (∼1%) encodes proteins, but a large portion of tran...
Increasing evidence indicates that RNA plays an active role in a number of neurodegenerative disease...