MemBrain: An Easy-to-Use Online Webserver for Transmembrane Protein Structure Prediction
Published 2017 View Full Article
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Title
MemBrain: An Easy-to-Use Online Webserver for Transmembrane Protein Structure Prediction
Authors
Keywords
Transmembrane α-helices, Structure prediction, Machine learning, Contact map prediction, Relative accessible surface area
Journal
Nano-Micro Letters
Volume 10, Issue 1, Pages -
Publisher
Springer Nature
Online
2017-09-27
DOI
10.1007/s40820-017-0156-2
References
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Related references
Note: Only part of the references are listed.- Accurate De Novo Prediction of Protein Contact Map by Ultra-Deep Learning Model
- (2017) Sheng Wang et al. PLoS Computational Biology
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- (2016) Gene A. Morrill et al. JOURNAL OF MOLECULAR EVOLUTION
- Accurate disulfide-bonding network predictions improveab initiostructure prediction of cysteine-rich proteins
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- Prediction Enhancement of Residue Real-Value Relative Accessible Surface Area in Transmembrane Helical Proteins by Solving the Output Preference Problem of Machine Learning-Based Predictors
- (2015) Feng Xiao et al. Journal of Chemical Information and Modeling
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- Architectural Organization of the Metabolic Regulatory Enzyme GhrelinO-Acyltransferase
- (2013) Martin S. Taylor et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Deep architectures for protein contact map prediction
- (2012) Pietro Di Lena et al. BIOINFORMATICS
- PSICOV: precise structural contact prediction using sparse inverse covariance estimation on large multiple sequence alignments
- (2011) David T. Jones et al. BIOINFORMATICS
- Predicting Transmembrane Helix Packing Arrangements using Residue Contacts and a Force-Directed Algorithm
- (2010) Timothy Nugent et al. PLoS Computational Biology
- Solvent accessible surface area approximations for rapid and accurate protein structure prediction
- (2009) Elizabeth Durham et al. JOURNAL OF MOLECULAR MODELING
- MemBrain: Improving the Accuracy of Predicting Transmembrane Helices
- (2008) Hongbin Shen et al. PLoS One
- Prediction of helix-helix contacts and interacting helices in polytopic membrane proteins using neural networks
- (2008) Angelika Fuchs et al. PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS
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