Motivation: Protein sequence alignments are essential to structural, evolutionary and functional analysis, but their accuracy is often limited by sequence similarity unless molecular structures are available. Protein structures predicted at experimental grade accuracy, as achieved by AlphaFold2, could therefore have a major impact on sequence analysis. Results: Here, we find that multiple sequence alignments estimated on AlphaFold2 predictions are almost as accurate as alignments estimated on experimental structures and significantly closer to the structural reference than sequence-based alignments. We also show that AlphaFold2 structural models of relatively low quality can be used to obtain highly accurate alignments. These results sugges...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
AlphaFold2 is a machine-learning algorithm for protein structure prediction that has now been used t...
Recent technological breakthroughs in machine-learning-based AlphaFold2 (AF2) are pushing the predic...
The basic operation in analysis of protein evolution is alignment: the specification of residue-resi...
Data, figures and tables from the manuscript "Highly significant improvement of protein sequence ali...
Data, figures and tables from the manuscript "Improving sequence alignments with AlphaFold2 regardle...
Summary: Accurate alignment of protein sequences and/or structures is crucial for many biological an...
Here, the authors evaluate the performance of AlphaFold2 and its predicted structures on common stru...
Structural genomics aims to experimentally determine nearly all protein folds by 2010, which makes ...
Structural genomics aims to experimentally determine nearly all protein folds by 2010, which makes ...
Accurate comparative analysis tools for low-homology proteins remains a difficult challenge in compu...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
Abstract: Protein sequence alignment is one of the crucial tasks of computational biology which form...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
AlphaFold2 is a machine-learning algorithm for protein structure prediction that has now been used t...
Recent technological breakthroughs in machine-learning-based AlphaFold2 (AF2) are pushing the predic...
The basic operation in analysis of protein evolution is alignment: the specification of residue-resi...
Data, figures and tables from the manuscript "Highly significant improvement of protein sequence ali...
Data, figures and tables from the manuscript "Improving sequence alignments with AlphaFold2 regardle...
Summary: Accurate alignment of protein sequences and/or structures is crucial for many biological an...
Here, the authors evaluate the performance of AlphaFold2 and its predicted structures on common stru...
Structural genomics aims to experimentally determine nearly all protein folds by 2010, which makes ...
Structural genomics aims to experimentally determine nearly all protein folds by 2010, which makes ...
Accurate comparative analysis tools for low-homology proteins remains a difficult challenge in compu...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
Abstract: Protein sequence alignment is one of the crucial tasks of computational biology which form...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
Most proteins fold into 3D structures that determine how they function and orchestrate the biologica...
AlphaFold2 is a machine-learning algorithm for protein structure prediction that has now been used t...
Recent technological breakthroughs in machine-learning-based AlphaFold2 (AF2) are pushing the predic...