BMRB

Biological Magnetic Resonance Data Bank


A Repository for Data from NMR Spectroscopy on Proteins, Peptides, Nucleic Acids, and other Biomolecules
Member of WWPDB

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Entry ID Data summary Entry Title Citation Title Authors
36243 Chemical Shifts: 1 set
Mouse receptor-interacting protein kinase 3 (RIP3) amyloid structure by solid-state NMR The amyloid structure of mouse RIPK3 (receptor interacting protein kinase 3) in cell necroptosis. Download bibtex for citation iamge Bing Li, Charles D Schwieters, Guo-Xiang X Wu, Hong Hu, Hua-Yi Y Wang, Jian Wang, Jing X Liu, Jing-Yu Y Lin, Jing Zhang, Jun-Xia X Lu, Xia-Lian L Wu, Xing-Qi Q Dong
17108 Chemical Shifts: 1 set
NMR STRUCTURE OF HUMAN INSULIN MUTANT ILE-A2-LEU, VAL-A3-LEU 2 HIS-B10-ASP, PRO-B28-LYS, LYS-B29-PRO, 20 STRUCTURES Chiral Protein Engineering and its Application in G Health Download bibtex for citation iamge J Whittaker, K Huang, M A Weiss, N B Philips, P G Katsoyannis, Q X Hua, S Q Hu, Z L Wan
17107 Chemical Shifts: 1 set
NMR STRUCTURE OF HUMAN INSULIN MUTANT GLY-B20-D-ALA, GLY-B23 2 PRO-B28-LYS, LYS-B29-PRO, 20 STRUCTURES Chiral Protein Engineering and its Application in G Health Download bibtex for citation iamge J Whittaker, K Huang, M A Weiss, N B Philips, P G Katsoyannis, Q X Hua, S Q Hu, Z L Wan
16026 Chemical Shifts: 1 set
ENHANCING THE ACTIVITY OF INSULIN BY STEREOSPECIFIC UNFOLDING Enhancing the activity of a protein by stereospecific unfolding. The conformational life cycle of insulin and its evolutionary origins. Download bibtex for citation iamge B Xu, J Wittaker, K Huang, M A Weiss, P G Katsoyannis, Q X Hua, S H Wang, S Nakarawa, S Q Hu, W Jia
16027 Chemical Shifts: 1 set
ENHANCING THE ACTIVITY OF INSULIN BY STEREOSPECIFIC UNFOLDING Enhancing the activity of a protein by stereospecific unfolding. The conformational life cycle of insulin and its evolutionary origins Download bibtex for citation iamge B Xu, J Wittaker, K Huang, M A Weiss, P G Katsoyannis, Q X Hua, S H Wang, S Nakarawa, S Q Hu, W Jia
6203 Chemical Shifts: 2 sets
1H chemical shift assignments for ThrB12-DKP-insulin How Insulin Binds: the B-Chain alpha-Helix Contacts the L1 beta -Helix of the Insulin Receptor. Download bibtex for citation iamge A M Theede, B Li, B Xu, J Whittaker, K Huang, M A Weiss, P De Meyts, P G Katsoyannis, Q X Hua, R Y Wang, S H Nakagawa, S Q Hu, S Wang, Y C Chu, Y Qu
6204 Chemical Shifts: 4 sets
1H chemical shift assignments for AlaB12-DKP-insulin How Insulin Binds: the B-Chain alpha-Helix Contacts the L1 beta -Helix of the Insulin Receptor. Download bibtex for citation iamge A M Theede, B Li, B Xu, J Whittaker, K Huang, M A Weiss, P De Meyts, P G Katsoyannis, Q X Hua, R Y Wang, S H Nakagawa, S Q Hu, S Wang, Y C Chu, Y Qu
6205 Chemical Shifts: 2 sets
1H chemical shift assignments for AbaB12-DKP-insulin How Insulin Binds: the B-Chain alpha-Helix Contacts the L1 beta -Helix of the Insulin Receptor. Download bibtex for citation iamge A M Theede, B Li, B Xu, J Whittaker, K Huang, M A Weiss, P De Meyts, P G Katsoyannis, Q X Hua, R Y Wang, S H Nakagawa, S Q Hu, S Wang, Y C Chu, Y Qu