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Feifei Tian

Showing results (1-10 of 62) with videos related to

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Amino Acids|November 18, 2011
Structure-based prediction of protein-protein binding affinity with consideration of allosteric effectFeifei Tian, Yonggang Lv, Li Yang
Chemical Biology & Drug Design|February 23, 2007
A structure-based, quantitative structure-activity relationship approach for predicting HLA-A*0201-restricted cytotoxic T lymphocyte epitopesPeng Zhou, Feifei Tian, Zhiliang Li
Chemical Biology & Drug Design|December 19, 2008
LigEvolutioner, a new strategy for modification and optimization of lead compounds in receptor/ligand complexesPeng Zhou, Feifei Tian, Zhicai Shang
Science Advances|May 7, 2025
Ab initio deep neural network simulations reveal that carbonic acid dissociation is dominated by minority cis-trans conformersYueqi Zhao, Feifei Tian, Zhaoru Sun
Analytica Chimica Acta|August 9, 2007
Quantitative structure-property relationship studies for collision cross sections of 579 singly protonated peptides based on a novel descriptor as molecular graph fingerprint (MoGF)Peng Zhou, Feifei Tian, Zhiliang Li
Journal of Computational Chemistry|October 24, 2008
2D depiction of nonbonding interactions for protein complexesPeng Zhou, Feifei Tian, Zhicai Shang
Journal of Chemical Information and Modeling|August 24, 2010
Systematic classification and analysis of themes in protein-DNA recognitionPeng Zhou, Feifei Tian, Yanrong Ren, et al.
Proteins|December 18, 2008
Geometric characteristics of hydrogen bonds involving sulfur atoms in proteinsPeng Zhou, Feifei Tian, Fenglin Lv, et al.
Analytica Chimica Acta|May 26, 2009
Predicting liquid chromatographic retention times of peptides from the Drosophila melanogaster proteome by machine learning approachesFeifei Tian, Li Yang, Fenglin Lv, et al.
Journal of Chromatography. A|February 24, 2009
Comprehensive comparison of eight statistical modelling methods used in quantitative structure-retention relationship studies for liquid chromatographic retention times of peptides generated by protease digestion of the Escherichia coli proteomePeng Zhou, Feifei Tian, Fenglin Lv, et al.
Pageof 7

Showing results (1-10 of 62) with videos related to

Sort By:
Pageof 7
Amino Acids|November 18, 2011
Structure-based prediction of protein-protein binding affinity with consideration of allosteric effectFeifei Tian, Yonggang Lv, Li Yang
Chemical Biology & Drug Design|February 23, 2007
A structure-based, quantitative structure-activity relationship approach for predicting HLA-A*0201-restricted cytotoxic T lymphocyte epitopesPeng Zhou, Feifei Tian, Zhiliang Li
Chemical Biology & Drug Design|December 19, 2008
LigEvolutioner, a new strategy for modification and optimization of lead compounds in receptor/ligand complexesPeng Zhou, Feifei Tian, Zhicai Shang
Science Advances|May 7, 2025
Ab initio deep neural network simulations reveal that carbonic acid dissociation is dominated by minority cis-trans conformersYueqi Zhao, Feifei Tian, Zhaoru Sun
Analytica Chimica Acta|August 9, 2007
Quantitative structure-property relationship studies for collision cross sections of 579 singly protonated peptides based on a novel descriptor as molecular graph fingerprint (MoGF)Peng Zhou, Feifei Tian, Zhiliang Li
Journal of Computational Chemistry|October 24, 2008
2D depiction of nonbonding interactions for protein complexesPeng Zhou, Feifei Tian, Zhicai Shang
Journal of Chemical Information and Modeling|August 24, 2010
Systematic classification and analysis of themes in protein-DNA recognitionPeng Zhou, Feifei Tian, Yanrong Ren, et al.
Proteins|December 18, 2008
Geometric characteristics of hydrogen bonds involving sulfur atoms in proteinsPeng Zhou, Feifei Tian, Fenglin Lv, et al.
Analytica Chimica Acta|May 26, 2009
Predicting liquid chromatographic retention times of peptides from the Drosophila melanogaster proteome by machine learning approachesFeifei Tian, Li Yang, Fenglin Lv, et al.
Journal of Chromatography. A|February 24, 2009
Comprehensive comparison of eight statistical modelling methods used in quantitative structure-retention relationship studies for liquid chromatographic retention times of peptides generated by protease digestion of the Escherichia coli proteomePeng Zhou, Feifei Tian, Fenglin Lv, et al.
Pageof 7