Structural characterization of proteins and their complexes is a fundamental part in understanding any biological phenomena. Yet, the experimental determination of the three‐dimensional (3D) structure of proteins and their complexes remains a challenging undertaking. In order to complement the experimental approaches, computational methods have been developed based on a variety of algorithms and models to fill the gap between the amount of sequences and structures. In this article, we review the most common methodological approaches currently used in the field, highlighting the ab initio structure prediction methods and methods for the prediction and structural modeling of protein–protein interfaces (PPIs). We particularly focus on the use ...
It is widely believed that the protein structures play key roles in determining the functions, activ...
Abstract — 1D protein sequences, 2D contact maps and 3D structures are three different representatio...
Proteins are involved in many cell activities (e.g., molecular transport, mechanical functions, mess...
Currently, with the growth of experimental structural data on protein-protein interactions and large...
Protein Structure Prediction (PSP) problem is to determine the three-dimensional structure of a prot...
Motivation: Elucidation of the full network of protein–protein interac-tions is crucial for understa...
Motivation: Elucidation of the full network of protein–protein interac-tions is crucial for understa...
Knowledge of the structure of a protein is essential for understanding the protein's function, but e...
Knowledge of the structure of a protein is essential for understanding the protein's function, but e...
The problem of protein structure prediction is one of the long-standing goals of Computational Bio...
The problem of protein structure prediction is one of the long-standing goals of Computational Bio...
Protein-protein interactions are fundamental to many biological processes. Experimental screens have...
Genome sequencing projects are producing linear amino acid sequences, but full understanding of the ...
Protein-protein interactions are fundamental to many biological processes. Experimental screens have...
Protein-protein interactions are fundamental to many biological processes. Experimental screens have...
It is widely believed that the protein structures play key roles in determining the functions, activ...
Abstract — 1D protein sequences, 2D contact maps and 3D structures are three different representatio...
Proteins are involved in many cell activities (e.g., molecular transport, mechanical functions, mess...
Currently, with the growth of experimental structural data on protein-protein interactions and large...
Protein Structure Prediction (PSP) problem is to determine the three-dimensional structure of a prot...
Motivation: Elucidation of the full network of protein–protein interac-tions is crucial for understa...
Motivation: Elucidation of the full network of protein–protein interac-tions is crucial for understa...
Knowledge of the structure of a protein is essential for understanding the protein's function, but e...
Knowledge of the structure of a protein is essential for understanding the protein's function, but e...
The problem of protein structure prediction is one of the long-standing goals of Computational Bio...
The problem of protein structure prediction is one of the long-standing goals of Computational Bio...
Protein-protein interactions are fundamental to many biological processes. Experimental screens have...
Genome sequencing projects are producing linear amino acid sequences, but full understanding of the ...
Protein-protein interactions are fundamental to many biological processes. Experimental screens have...
Protein-protein interactions are fundamental to many biological processes. Experimental screens have...
It is widely believed that the protein structures play key roles in determining the functions, activ...
Abstract — 1D protein sequences, 2D contact maps and 3D structures are three different representatio...
Proteins are involved in many cell activities (e.g., molecular transport, mechanical functions, mess...