An iterative method for faster sum-of-pairs multiple sequence alignment

Reinert K, Stoye J, Will T (2000)
Bioinformatics 16(9): 808-814.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Reinert, Knut; Stoye, JensUniBi ; Will, Torsten
Erscheinungsjahr
2000
Zeitschriftentitel
Bioinformatics
Band
16
Ausgabe
9
Seite(n)
808-814
ISSN
1367-4803
eISSN
1460-2059
Page URI
https://pub.uni-bielefeld.de/record/1773341

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Reinert K, Stoye J, Will T. An iterative method for faster sum-of-pairs multiple sequence alignment. Bioinformatics. 2000;16(9):808-814.
Reinert, K., Stoye, J., & Will, T. (2000). An iterative method for faster sum-of-pairs multiple sequence alignment. Bioinformatics, 16(9), 808-814. https://doi.org/10.1093/bioinformatics/16.9.808
Reinert, Knut, Stoye, Jens, and Will, Torsten. 2000. “An iterative method for faster sum-of-pairs multiple sequence alignment”. Bioinformatics 16 (9): 808-814.
Reinert, K., Stoye, J., and Will, T. (2000). An iterative method for faster sum-of-pairs multiple sequence alignment. Bioinformatics 16, 808-814.
Reinert, K., Stoye, J., & Will, T., 2000. An iterative method for faster sum-of-pairs multiple sequence alignment. Bioinformatics, 16(9), p 808-814.
K. Reinert, J. Stoye, and T. Will, “An iterative method for faster sum-of-pairs multiple sequence alignment”, Bioinformatics, vol. 16, 2000, pp. 808-814.
Reinert, K., Stoye, J., Will, T.: An iterative method for faster sum-of-pairs multiple sequence alignment. Bioinformatics. 16, 808-814 (2000).
Reinert, Knut, Stoye, Jens, and Will, Torsten. “An iterative method for faster sum-of-pairs multiple sequence alignment”. Bioinformatics 16.9 (2000): 808-814.
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11 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Disease Sequences High-Accuracy Alignment Based on the Precision Medicine.
Li M, Long H, Wang H, Fu H, Xu D, Shen Y, Yao Y, Liao B., Biomed Res Int 2018(), 2018
PMID: 29682519
DivA: detection of non-homologous and very divergent regions in protein sequence alignments.
Zepeda Mendoza ML, Nygaard S, da Fonseca RR., BMC Res Notes 7(), 2014
PMID: 25403086
Identifying foldable regions in protein sequence from the hydrophobic signal.
Pang CN, Lin K, Wouters MA, Heringa J, George RA., Nucleic Acids Res 36(2), 2008
PMID: 18056079
Segment-based multiple sequence alignment.
Rausch T, Emde AK, Weese D, Döring A, Notredame C, Reinert K., Bioinformatics 24(16), 2008
PMID: 18689823
A fast parallel algorithm for finding the longest common sequence of multiple biosequences.
Chen Y, Wan A, Liu W., BMC Bioinformatics 7 Suppl 4(), 2006
PMID: 17217522
Recent progress in multiple sequence alignment: a survey.
Notredame C., Pharmacogenomics 3(1), 2002
PMID: 11966409
Multiple alignment of complete sequences (MACS) in the post-genomic era.
Lecompte O, Thompson JD, Plewniak F, Thierry J, Poch O., Gene 270(1-2), 2001
PMID: 11403999
Towards a reliable objective function for multiple sequence alignments.
Thompson JD, Plewniak F, Ripp R, Thierry JC, Poch O., J Mol Biol 314(4), 2001
PMID: 11734009
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