CrossRef Text and Data Mining
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Interpretation of Association Networks among Protein Sequence Motifs.
Hye J Kam, Junehawk Lee, Doheon Lee, Kwang H Lee
Genomics Inform. 2003;1(2):75-79.

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Conserved sequence motifs among bacterial, eukaryotic, and archaeal phosphatases that define a new phosphohydrolase superfamily
Protein Science. 1998;7(7):1647-1652   Crossref logo
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4. Regulatory models: networks, motifs, modules, sequence drivers and predictive models
Nature. 2015;   Crossref logo
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Definition of the tempo of sequence diversity across an alignment and automatic identification of sequence motifs: Application to protein homologous families and superfamilies
Protein Science. 2009;11(12):2825-2835   Crossref logo
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Conserved sequence pattern in a wide variety of phosphoesterases
Protein Science. 1994;3(2):356-358   Crossref logo
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Substrate Discrimination among Mitogen-activated Protein Kinases through Distinct Docking Sequence Motifs
Journal of Biological Chemistry. 2008;283(28):19511-19520   Crossref logo
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Protein-Protein Interactions in the Membrane: Sequence, Structural, and Biological Motifs
Structure. 2008;16(7):991-1001   Crossref logo
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Identification of Multi-Residue Motifs in Short Sequence Fragments of Membrane Protein
Biophysical Journal. 2011;100(3):206a   Crossref logo
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Common amino acid sequence motifs in p53, 14-3-3 and Akt protein families
FEBS Letters. 2001;507(2):237-240   Crossref logo
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Detecting correlations among functional-sequence motifs
Physical Review E. 2012;85(6):   Crossref logo
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Sequence Representation and Prediction of Protein Secondary Structure for Structural Motifs in Twilight Zone Proteins
The Protein Journal. 2006;25(7-8):463-474   Crossref logo
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