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臺灣學術機構典藏系統 (Taiwan Academic Institutional Repository, TAIR)
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Showing items 71-80 of 122  (13 Page(s) Totally)
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Institution Date Title Author
元智大學 2014-07 An Intelligent System for Identifying Acetylated Lysine on Histones and Nonhistone Proteins Cheng-Tsung Lu; Tzong-Yi Lee; Yu-Ju Chen; Yi-Ju Chen
元智大學 2014-07 Incorporating Amino Acids Composition and Functional Domains for Identifying Bacterial Toxin Proteins Min-Gang Su; Chien-Hsun Huang; Tzong-Yi Lee; Yu-Ju Chen; Hsin-Yi Wu
元智大學 2014-07 An Intelligent System for Identifying Acetylated Lysine on Histones and Nonhistone Proteins Cheng-Tsung Lu; Tzong-Yi Lee; Yu-Ju Chen; Yi-Ju Chen
元智大學 2014-04-11 Systematic Pipeline for the analysis of microRNA-gene interactions in active and latent TB infection Julia Weng; Kai-Yao Huang; Shih-Wei Lee; Lawrence Shih-Hsin Wu; Yi-Cheng Chen; Tzong-Yi Lee
元智大學 2014-01-17 Identification and characterization of lysine methylation sites on histones and non-histone proteins Tzong-Yi Lee; Cheng-Wei Chang; Cheng-Tzung Lu; Tzu-Hsiu Cheng; Tzu-Hao Chang
元智大學 2014-01-17 Identification and characterization of lysine methylation sites on histones and non-histone proteins Tzong-Yi Lee; Cheng-Wei Chang; Cheng-Tzung Lu; Tzu-Hsiu Cheng; Tzu-Hao Chang
元智大學 2013-10-1 ViralPhos: incorporating a recursively statistical method to predict phosphorylation sites on virus proteins Kai-Yao Huang; Cheng-Tsung Lu; Neil Arvin Bretaña; Tzong-Yi Lee; Tzu-Hao Chang
元智大學 2013-10-1 Incorporating substrate sequence motifs and spatial amino acid composition to identify kinase-specific phosphorylation sites on protein three-dimensional structures Min-Gang Su; Tzong-Yi Lee
元智大學 2013-09-20 Incorporating substrate sequence motifs and spatial amino acid composition to identify kinase-specific phosphorylation sites on protein three-dimensional structures Min-Gang Su; Tzong-Yi Lee
元智大學 2013-09-20 ViralPhos: incorporating a recursively statistical method to predict phosphorylation sites on virus proteins Kai-Yao Huang; Cheng-Tsung Lu; Neil Arvin Bretaña; Tzong-Yi Lee; Tzu-Hao Chang

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