Scinovex
article Open AccessTop 1% cited

NetSurfP‐2.0: Improved prediction of protein structural features by integrated deep learning

Proteins Structure Function and Bioinformatics · 2019 · Vol. 87(6) · pp. 520–527
Michael Schantz KlausenMartin Closter JespersenHenrik NielsenKamilla Kjærgaard JensenVanessa JurtzCasper Kaae SønderbyMorten Otto Alexander SommerOle WintherMorten NielsenBent PetersenPaolo Marcatili

Abstract

The ability to predict local structural features of a protein from the primary sequence is of paramount importance for unraveling its function in absence of experimental structural information. Two main factors affect the utility of potential prediction tools: their accuracy must enable extraction of reliable structural information on the proteins of interest, and their runtime must be low to keep pace with sequencing data being generated at a constantly increasing speed. Here, we present NetSurfP-2.0, a novel tool that can predict the most important local structural features with unprecedented accuracy and runtime. NetSurfP-2.0 is sequence-based and uses an architecture composed of convolutional and long short-term memory neural networks trained on solved protein structures. Using a single integrated model, NetSurfP-2.0 predicts solvent accessibility, secondary structure, structural disorder, and backbone dihedral angles for each residue of the input sequences. We assessed the accuracy of NetSurfP-2.0 on several independent test datasets and found it to consistently produce state-of-the-art predictions for each of its output features. We observe a correlation of 80% between predictions and experimental data for solvent accessibility, and a precision of 85% on secondary structure 3-class predictions. In addition to improved accuracy, the processing time has been optimized to allow predicting more than 1000 proteins in less than 2 hours, and complete proteomes in less than 1 day.

Protein Structure and DynamicsMachine Learning in BioinformaticsEnzyme Structure and FunctionDeep learningArtificial intelligenceComputer scienceProtein structure predictionChemistryProtein structure

MeSH terms

Deep LearningProtein Structure, SecondaryComputational BiologyProteomeDatabases, Protein

Funding

  • Novo Nordisk
  • Novo Nordisk Fonden
Citations
602
FWCI
30.67
field-weighted impact
References
36
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

NetSurfP‐2.0: Improved prediction of protein structural features by integrated deep learning · Scinovex