AI-based protein structure prediction pipelines, such as AlphaFold2, have achieved near-experimental accuracy. These advanced pipelines mainly rely on Multiple Sequence Alignments (MSAs) as inputs to learn the co-evolution information from the homologous sequences. Nonetheless, searching MSAs from protein databases is time-consuming, usually taking dozens of minutes. Consequently, we attempt to explore the limits of fast protein structure prediction by using only primary sequences of proteins. HelixFold-Single is proposed to combine a large-scale protein language model with the superior geometric learning capability of AlphaFold2. Our proposed method, HelixFold-Single, first pre-trains a large-scale protein language model (PLM) with thousan...
Deep-learning (DL) methods like DeepMind's AlphaFold2 (AF2) have led to substantial improvements in ...
MOTIVATION: Over the past 50 years, our ability to model protein sequences with evolutionary informa...
The protein sequence determines how it will fold into its unique three-dimensional structure. Once f...
Breakthrough methods in machine learning (ML), protein structure prediction, and novel ultrafast str...
Data-driven predictive methods which can efficiently and accurately transform protein sequences into...
Proteins are the essential agents of all living systems. Even though they are synthesized as linear ...
AlphaFold2 is a machine-learning algorithm for protein structure prediction that has now been used t...
AbstractModeling and predicting the structure of proteins is one of the most important challenges of...
By analysing the structure of a protein it is possible to draw conclusions about its function. Obtai...
Recent breakthroughs in protein structure prediction have increasingly relied on the use of deep neu...
Large-scale Protein Language Models (PLMs) have improved performance in protein prediction tasks, ra...
Deep learning-based prediction of protein structure usually begins by constructing a multiple sequen...
Abstract Background Our goal is to develop a state-of-the-art protein secondary structure predictor,...
In recent years, advances in sequencing techniques resulted in an explosive increase in sequencing d...
Recent breakthroughs in DNA and protein sequencing have unlocked many secrets of molecular biology. ...
Deep-learning (DL) methods like DeepMind's AlphaFold2 (AF2) have led to substantial improvements in ...
MOTIVATION: Over the past 50 years, our ability to model protein sequences with evolutionary informa...
The protein sequence determines how it will fold into its unique three-dimensional structure. Once f...
Breakthrough methods in machine learning (ML), protein structure prediction, and novel ultrafast str...
Data-driven predictive methods which can efficiently and accurately transform protein sequences into...
Proteins are the essential agents of all living systems. Even though they are synthesized as linear ...
AlphaFold2 is a machine-learning algorithm for protein structure prediction that has now been used t...
AbstractModeling and predicting the structure of proteins is one of the most important challenges of...
By analysing the structure of a protein it is possible to draw conclusions about its function. Obtai...
Recent breakthroughs in protein structure prediction have increasingly relied on the use of deep neu...
Large-scale Protein Language Models (PLMs) have improved performance in protein prediction tasks, ra...
Deep learning-based prediction of protein structure usually begins by constructing a multiple sequen...
Abstract Background Our goal is to develop a state-of-the-art protein secondary structure predictor,...
In recent years, advances in sequencing techniques resulted in an explosive increase in sequencing d...
Recent breakthroughs in DNA and protein sequencing have unlocked many secrets of molecular biology. ...
Deep-learning (DL) methods like DeepMind's AlphaFold2 (AF2) have led to substantial improvements in ...
MOTIVATION: Over the past 50 years, our ability to model protein sequences with evolutionary informa...
The protein sequence determines how it will fold into its unique three-dimensional structure. Once f...