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Entry ID Original Release date Data summary Entry Title Citation Title Authors
11587 2016-01-04 Chemical Shifts: 1 set
Solution structure of Human Pin1 PPIase mutant C113A Allosteric Breakage of the Hydrogen Bond within the Dual-Histidine Motif in the Active Site of Human Pin1 PPIase Download bibtex for citation iamge Jing Wang, Jun-ichi Uewaki, Naoko Utsunomiya-Tate, Naoya Tochio, Ning Xu, Ryosuke Kawasaki, Shin-ichi Tate, Yu Tamari
11588 2016-01-04 Chemical Shifts: 1 set
Solution structure of Human Pin1 PPIase C113S mutant Allosteric Breakage of the Hydrogen Bond within the Dual-Histidine Motif in the Active Site of Human Pin1 PPIase Download bibtex for citation iamge Jing Wang, Jun-ichi Uewaki, Naoko Utsunomiya-Tate, Naoya Tochio, Ning Xu, Ryosuke Kawasaki, Shin-ichi Tate, Yu Tamari
11559 2014-12-15 Chemical Shifts: 1 set
Solution structure of the peptidyl prolyl cis-trans isomerase domain of human Pin1 with sulfate ion The C113D mutation in human Pin1 causes allosteric structural changes in the phosphate binding pocket of the PPIase domain through the tug of war in the dual-histidine motif Download bibtex for citation iamge Jing Wang, Jun-ichi Uewaki, Kazuhiko Igarashi, Naohiro Kobayashi, Naoko Utsunomiya-Tate, Naoya Tochio, Ning Xu, Shin-ichi Tate, Takuma Shiraki, Yu Tamari
11560 2014-12-15 Chemical Shifts: 1 set
Solution structure of the peptidyl prolyl cis-trans isomerase domain of C113D mutant with sulfate ion The C113D mutation in human Pin1 causes allosteric structural changes in the phosphate binding pocket of the PPIase domain through the tug of war in the dual-histidine motif Download bibtex for citation iamge Jing Wang, Jun-ichi Uewaki, Kazuhiko Igarashi, Naohiro Kobayashi, Naoko Utsunomiya-Tate, Naoya Tochio, Ning Xu, Shin-ichi Tate, Takuma Shiraki, Yu Tamari
11557 2018-12-18 Chemical Shifts: 1 set
Backbone 1H, 13C, and 15N Chemical Shift Assignments for the peptidyl prolyl cis-trans isomerase domain of human Pin1 without sulfate ion The C113D mutation in human Pin1 causes allosteric structural changes in the phosphate binding pocket of the PPIase domain through the tug of war in the dual-histidine motif. Download bibtex for citation iamge Jong Wang, Jun-ichi Uewaki, Kazuhiko Igarashi, Naohiro Kobayashi, Naoko Utsunomiya-Tate, Naoya Tochio, Ning Xu, Shin-ichi Tate, Takuma Shiraki, Yu Tamari
11558 2018-12-18 Chemical Shifts: 1 set
Backbone 1H, 13C, and 15N Chemical Shift Assignments for the peptidyl prolyl cis-trans isomerase domain of C113D mutant human Pin1 without sulfate ion The C113D mutation in human Pin1 causes allosteric structural changes in the phosphate binding pocket of the PPIase domain through the tug of war in the dual-histidine motif. Download bibtex for citation iamge Jong Wang, Jun-ichi Uewaki, Kazuhiko Igarashi, Naohiro Kobayashi, Naoko Utsunomiya-Tate, Naoya Tochio, Ning Xu, Shin-ichi Tate, Takuma Shiraki, Yu Tamari
19799 2014-06-12 Chemical Shifts: 1 set
Solution structure of LysM the peptidoglycan binding domain of autolysin AtlA from Enterococcus faecalis Molecular basis for bacterial peptidoglycan recognition by LysM domains Download bibtex for citation iamge Andrea M Hounslow, Jean-Baptiste Rouget, Jordan D Dimitrov, Koichi Fukase, Mariano Dellarole, Michael P Williamson, Nicola J Baxter, Ning Wang, Sebastien Lacroix-Desmazes, Simon J Foster, Stephane Mesnage, Yukari Fujimoto
15309 2008-02-28 Chemical Shifts: 3 sets
1H Chemical Shift Assignments for Cardiotoxin A5 from Naja Atra at Neutral pH and temperature of 318K Role of glycosphingolipid conformational change in membrane pore forming activity of cobra cardiotoxin Download bibtex for citation iamge Chang-Mao Wang, Nan-Lu Ho, Po-Long Wu, Siu-Cin Tjong, Wei-Ning Huang, Wen-Guey Wu
15305 2008-02-28 Chemical Shifts: 3 sets
1H Chemical Shift Assignments for Cardiotoxin A3 from Naja Atra at Neutral pH and temperature of 318K Role of glycosphingolipid conformational change in membrane pore forming activity of cobra cardiotoxin Download bibtex for citation iamge Chang-Mao Wang, Nan-Lu Ho, Po-Long Wu, Siu-Cin Tjong, Wei-Ning Huang, Wen-Guey Wu