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Institution Date Title Author
元智大學 Jul-15 A two-layered machine learning method to identify protein O-GlcNAcylation sites with O-GlcNAc transferase substrate motifs (通訊作者) Hui-Ju Kao; Chien-Hsun Huang; Neil Arvin Bretaña; Cheng-Tsung Lu; Kai-Yao Huang; Tzong-Yi Lee
元智大學 Jan-15 Characterization and Identification of Ubiquitin Conjugation Sites with E3 Ligase Recognition Specificities (通訊作者) Van-Nui Nguyen; Kai-Yao Huang; Chien-Hsun Huang; Tzu-Hao Chang; Neil Arvin Bretaña; K. Lai; Julia Weng; Tzong-Yi Lee
元智大學 Dec-15 A two-layered machine learning method to identify protein O-GlcNAcylation sites with O-GlcNAc transferase substrate motifs Hui-Ju Kao; Chien-Hsun Huang; Neil Arvin Bretaña; Cheng-Tsung Lu; Kai-Yao Huang; Shun-Long Weng; Tzong-Yi Lee
元智大學 2015-09-09 A two-layered machine learning method to identify protein O-GlcNAcylation sites with O-GlcNAc transferase substrate motifs Hui-Ju Kao; Chien-Hsun Huang, ; Neil Arvin Bretaña; Cheng-Tsung Lu; Kai-Yao Huang; Shun-Long Weng; Tzong-Yi Lee
元智大學 2015-01-21 Characterization and identification of ubiquitin conjugation sites with E3 ligase recognition specificities C.H.Huang, T.H. Chang, N.A. Bretaña, K.R. Lai, J.T.Y. Weng, T.Y. Lee Van-Nui Nguyen; Kai-Yao Huang; Chien-Hsun Huang; Tzu-Hao Chang; Neil Arvin Bretaña; K. Lai; Julia Weng; Tzong-Yi Lee
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 2013-09-20 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
元智大學 2013-09 Exploiting two-layered support vector machine to predict phosphorylation sites on virus proteins Cheng-Tsung Lu; Kai-Yao Huang; Neil Arvin Bretaña; Wen-Chi Chang; Tzong-Yi Lee
元智大學 2013-06-08 Exploiting two-layered support vector machine to predict phosphorylation sites on virus proteins Cheng-Tsung Lu; Kai-Yao Huang; Neil Arvin Bretaña; Wen-Chi Chang; Tzong-Yi Lee
元智大學 2013-01 dbPTM 3.0: an informative resource for investigating substrate site specificity and functional association of protein post-translational modifications Cheng-Tsung Lu; Kai-Yao Huang; Min-Gang Su; Tzong-Yi Lee; Neil Arvin Bretaña; Wen-Chi Chang; Yi-Ju Chen; Yu-Ju Chen; Hsien-Da Huang
元智大學 2013-01 dbPTM 3.0: an informative resource for investigating substrate site specificity and functional association of protein post-translational modifications Cheng-Tsung Lu; Kai-Yao Huang; Min-Gang Su; Tzong-Yi Lee; Neil Arvin Bretaña; Wen-Chi Chang; Yi-Ju Chen; Yu-Ju Chen; Hsien-Da Huang
元智大學 2013-01 dbPTM 3.0: an informative resource for investigating substrate site specificity and functional association of protein post-translational modifications Cheng-Tsung Lu; Kai-Yao Huang; Min-Gang Su; Tzong-Yi Lee; Neil Arvin Bretaña; Wen-Chi Chang; Yi-Ju Chen; Yu-Ju Chen; Hsien-Da Huang
元智大學 2012-07 Identifying Protein Phosphorylation Sites with Kinase Substrate Specificity on Human Viruses Neil Arvin Bretana; Cheng-Tsung Lu; Chiu-Yun Chiang; Min-Gang Su; Kai-Yao Huang; Tzong-Yi Lee; Shun-Long Weng
元智大學 2011-11 Incorporating Evolutionary Information and Functional Domains for Identifying RNA Splicing Factors in Humans Justin BoKai Hsu; Neil Arvin Bretaña; Tzong-Yi Lee; Hsien-Da Huang
元智大學 2011-11 Investigation and identification of protein gamma-glutamyl carboxylation sites Tzong-Yi Lee; Cheng-Tsung Lu; Shu-An Chen; Neil Arvin Bretaña; Tzu-Hsiu Cheng; Min-Gang Su; Kai-Yao Huang
元智大學 2011-10 Carboxylator: incorporating solvent-accessible surface area for identifying protein carboxylation sites Cheng-Tsung Lu; Shu-An Chen; Neil Arvin Bretaña; Tzu-Hsiu Cheng; Tzong-Yi Lee
元智大學 2011-07 Exploiting maximal dependence decomposition to identify conserved motifs from a group of aligned signal sequences Tzong-Yi Lee; Zong-Qing Lin; Sheng-Jen Hsieh; Neil Arvin Bretaña; Cheng-Tsung Lu
元智大學 2011-06 PlantPhos: using Maximal Dependence Decomposition to Identify Plant Phosphorylation Sites with Substrate Site Specificity Tzong-Yi Lee; Neil ARVIN Bretana; Tsung-Cheng Lu

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