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KUPKOVÁ, K. SEDLÁŘ, K. PROVAZNÍK, I.
Original Title
Multidimensional Correlated Mutation Analysis for Protein Contact Map Prediction
Type
conference paper
Language
English
Original Abstract
Correlated mutation (CM) analysis has been proved to be an important tool used in protein contact map prediction from primary amino acid sequence. Over the last years CM methods have been refined and then often combined with methods of different nature in order to improve reached precision. However, since the methods are still relatively new, only precision and improvement have been reported without mentioning recall which is very low. In this paper, we combine previously described CM analysis methods with an outcome of four new techniques which significantly increase recall for the cost of minimal precision impairment. This study is the first of our knowledge with focus on recall improvement.
Keywords
Correlated mutations; Contact map; Protein structure prediction; Residue contact
Authors
KUPKOVÁ, K.; SEDLÁŘ, K.; PROVAZNÍK, I.
Released
26. 5. 2016
Publisher
Springer International Publishing
Location
Německo
ISBN
9783319399034
Book
Information Technologies in Medicine, 5th International Conference, ITIB 2016 Kamień Śląski, Poland, June 20 - 22, 2016 Proceedings, Volume 2
2194-5357
Periodical
Advances in Intelligent Systems and Computing
Year of study
472
Number
1
State
Swiss Confederation
Pages from
133
Pages to
144
Pages count
12
BibTex
@inproceedings{BUT126084, author="Kristýna {Kupková} and Karel {Sedlář} and Valentine {Provazník}", title="Multidimensional Correlated Mutation Analysis for Protein Contact Map Prediction", booktitle="Information Technologies in Medicine, 5th International Conference, ITIB 2016 Kamień Śląski, Poland, June 20 - 22, 2016 Proceedings, Volume 2", year="2016", journal="Advances in Intelligent Systems and Computing", volume="472", number="1", pages="133--144", publisher="Springer International Publishing", address="Německo", doi="10.1007/978-3-319-39904-1\{_}12", isbn="9783319399034", issn="2194-5357" }