Protein-RNA interactions are central to essential cellular processes such as protein synthesis and regulation of gene expression and play roles in human infectious and genetic diseases. Reliable identification of protein-RNA interfaces is critical for understanding the structural bases and functional implications of such interactions and for developing effective approaches to rational drug design. Sequence-based computational methods offer a viable, cost-effective way to identify putative RNA-binding residues in RNA-binding proteins. Here we report two novel approaches: (i) HomPRIP, a sequence homology-based method for predicting RNA-binding sites in proteins; (ii) RNABindRPlus, a new method that combines predictions from HomPRIP with those...
Despite the increasing number of protein-RNA complexes in structure databases, few data resources ha...
RNA-binding proteins (RBPs) play key roles in post-transcriptional control of gene expression, which...
RNA-protein interactions are vital to many biological processes such as translation and splicing. An...
Protein-RNA interactions are central to essential cellular processes such as protein synthesis and r...
Proteins and RNA interaction have vital roles in many cellular processes such as protein synthesis, ...
Abstract: Proteins and RNA interaction have vital roles in many cellular processes such as protein s...
Protein-RNA complexes play key roles in several cellular processes by the interactions of amino acid...
Abstract Background RNA molecules play diverse functional and structural roles in cells. They functi...
Abstract Background Understanding how biomolecules interact is a major task of systems biology. To m...
Increasing awareness of the importance of protein– RNA interactions has motivated many approaches to...
Identifying individual residues in the interfaces of protein–RNA complexes is important for understa...
RNA-binding proteins interact specifically with RNA strands to regulate important cellular processes...
RNA–protein interactions are vitally important in a wide range of biological processes, including re...
Background: RNA-binding proteins interact with specific RNA molecules to regulate important cellular...
RNA-binding proteins (RBPs) play crucial role in transcription and gene-regulation. This paper descr...
Despite the increasing number of protein-RNA complexes in structure databases, few data resources ha...
RNA-binding proteins (RBPs) play key roles in post-transcriptional control of gene expression, which...
RNA-protein interactions are vital to many biological processes such as translation and splicing. An...
Protein-RNA interactions are central to essential cellular processes such as protein synthesis and r...
Proteins and RNA interaction have vital roles in many cellular processes such as protein synthesis, ...
Abstract: Proteins and RNA interaction have vital roles in many cellular processes such as protein s...
Protein-RNA complexes play key roles in several cellular processes by the interactions of amino acid...
Abstract Background RNA molecules play diverse functional and structural roles in cells. They functi...
Abstract Background Understanding how biomolecules interact is a major task of systems biology. To m...
Increasing awareness of the importance of protein– RNA interactions has motivated many approaches to...
Identifying individual residues in the interfaces of protein–RNA complexes is important for understa...
RNA-binding proteins interact specifically with RNA strands to regulate important cellular processes...
RNA–protein interactions are vitally important in a wide range of biological processes, including re...
Background: RNA-binding proteins interact with specific RNA molecules to regulate important cellular...
RNA-binding proteins (RBPs) play crucial role in transcription and gene-regulation. This paper descr...
Despite the increasing number of protein-RNA complexes in structure databases, few data resources ha...
RNA-binding proteins (RBPs) play key roles in post-transcriptional control of gene expression, which...
RNA-protein interactions are vital to many biological processes such as translation and splicing. An...