CrossRef Text and Data Mining
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Improved Algorithms for the Identification of Yeast Proteins and Significant Transcription Factor and Motif Analysis.
Seung Won Lee, Seong Eui Hong, Kyoo Yeol Lee, Do Il Choi, Hae Young Chung, Cheol Goo Hur
Genomics Inform. 2006;4(2):87-93.

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MCOIN: a novel heuristic for determining transcription factor binding site motif width
Algorithms for Molecular Biology. 2013;8(1):   Crossref logo
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Transcription factor motif quality assessment requires systematic comparative analysis
F1000Research. 2015;4:1429   Crossref logo
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Transcription factor motif quality assessment requires systematic comparative analysis
F1000Research. 2016;4:1429   Crossref logo
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Vectors for transcription factor cloning and target site identification by means of genetic selection in yeast
Yeast. 1998;14(15):1407-1416   Crossref logo
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Use ofSaccharomyces cerevisiae in the identification of novel transcription factor DNA binding specificities
Yeast. 2001;18(5):445-454   Crossref logo
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Contribution of Transcription Factor Binding Site Motif Variants to Condition-Specific Gene Expression Patterns in Budding Yeast
PLoS ONE. 2012;7(2):e32274   Crossref logo
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De novo motif identification improves the accuracy of predicting transcription factor binding sites in ChIP-Seq data analysis
Nucleic Acids Research. 2010;38(11):e126-e126   Crossref logo
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Identification of transcription factor in the promoter region of rat regucalcin gene: Binding of nuclear factor I-A1 to TTGGC motif
Journal of Cellular Biochemistry. 2002;84(4):795-802   Crossref logo
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spatzie: an R package for identifying significant transcription factor motif co-enrichment from enhancer–promoter interactions
Nucleic Acids Research. 2022;50(9):e52-e52   Crossref logo
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Nucleolar transcription factor hUBF contains a DNA-binding motif with homology to HMG proteins
Nature. 1990;344(6269):830-836   Crossref logo
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