Abstract Background Understanding how biomolecules interact is a major task of systems biology. To model protein-nucleic acid interactions, it is important to identify the DNA or RNA-binding residues in proteins. Protein sequence features, including the biochemical property of amino acids and evolutionary information in terms of position-specific scoring matrix (PSSM), have been used for DNA or RNA-binding site prediction. However, PSSM is rather designed for PSI-BLAST searches, and it may not contain all the evolutionary information for modelling DNA or RNA-binding sites in protein sequences. Results In the present study, several new descriptors of evolutionary information have been developed and evaluated for sequence-based prediction of ...
RNA-binding proteins (RBPs) play key roles in post-transcriptional control of gene expression, which...
Protein-RNA interactions are central to essential cellular processes such as protein synthesis and r...
The knowledge of protein-DNA interactions is essential to fully understand the molecular activities ...
Background Understanding how biomolecules interact is a major task of systems biology. To model p...
Background Detection of DNA-binding sites in proteins is of enormous interest for technologies targ...
RNA-binding proteins (RBPs) play crucial role in transcription and gene-regulation. This paper descr...
ABSTRACT Proteins that interact with DNA are involved in a number of fundamental biological activiti...
AbstractProtein–DNA interactions are crucial to many cellular activities such as expression-control ...
Protein-DNA interactions play an essential role in transcriptional regulation, DNA repair, and many ...
Protein-nucleic acid interactions are central to various fundamental biological processes. Automated...
The interaction between proteins and DNA occurs widely during the replication and transcription of D...
<div><p>Protein-nucleic acid interactions are central to various fundamental biological processes. A...
DNA- and RNA-binding proteins have diverse roles in various biological processes. Their functions in...
DNA- and RNA-binding proteins have diverse roles in various biological processes. Their functions in...
DNA- and RNA-binding proteins have diverse roles in various biological processes. Their functions in...
RNA-binding proteins (RBPs) play key roles in post-transcriptional control of gene expression, which...
Protein-RNA interactions are central to essential cellular processes such as protein synthesis and r...
The knowledge of protein-DNA interactions is essential to fully understand the molecular activities ...
Background Understanding how biomolecules interact is a major task of systems biology. To model p...
Background Detection of DNA-binding sites in proteins is of enormous interest for technologies targ...
RNA-binding proteins (RBPs) play crucial role in transcription and gene-regulation. This paper descr...
ABSTRACT Proteins that interact with DNA are involved in a number of fundamental biological activiti...
AbstractProtein–DNA interactions are crucial to many cellular activities such as expression-control ...
Protein-DNA interactions play an essential role in transcriptional regulation, DNA repair, and many ...
Protein-nucleic acid interactions are central to various fundamental biological processes. Automated...
The interaction between proteins and DNA occurs widely during the replication and transcription of D...
<div><p>Protein-nucleic acid interactions are central to various fundamental biological processes. A...
DNA- and RNA-binding proteins have diverse roles in various biological processes. Their functions in...
DNA- and RNA-binding proteins have diverse roles in various biological processes. Their functions in...
DNA- and RNA-binding proteins have diverse roles in various biological processes. Their functions in...
RNA-binding proteins (RBPs) play key roles in post-transcriptional control of gene expression, which...
Protein-RNA interactions are central to essential cellular processes such as protein synthesis and r...
The knowledge of protein-DNA interactions is essential to fully understand the molecular activities ...