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Entry ID Original Release date Data summary Entry Title Citation Title Authors
30735 2020-04-27 Chemical Shifts: 1 set
NMR-driven structure of KRAS4B-GDP homodimer on a lipid bilayer nanodisc Two Distinct Structures of Membrane-associated Homodimers of GTP- and GDP-bound KRAS4B Revealed by Paramagnetic Relaxation Enhancement. Download bibtex for citation iamge C B Marshall, G G Seabrook, K Y Lee, L Zheng, M Enomoto, M Ikura, S Koide, Z Fang
30734 2020-04-08 Chemical Shifts: 1 set
NMR-driven structure of KRAS4B-GTP homodimer on a lipid bilayer nanodisc Two Distinct Structures of Membrane-associated Homodimers of GTP- and GDP-bound KRAS4B Revealed by Paramagnetic Relaxation Enhancement. Download bibtex for citation iamge C B Marshall, G G Seabrook, K Y Lee, L Zheng, M Enomoto, M Ikura, S Koide, Z Fang
30401 2018-08-20 Chemical Shifts: 1 set
NMR data-driven model of GTPase KRas-GMPPNP tethered to a nanodisc (E3 state) Inhibition of K-RAS4B by a Unique Mechanism of Action: Stabilizing Membrane-Dependent Occlusion of the Effector-Binding Site Download bibtex for citation iamge A D Gossert, C B Marshall, J M Jansen, M Ikura, T Nishikawa, W Jahnke, Z Fang
30403 2018-08-20 Chemical Shifts: 1 set
NMR data-driven model of GTPase KRas-GMPPNP:Cmpd2 complex tethered to a nanodisc Inhibition of K-RAS4B by a Unique Mechanism of Action: Stabilizing Membrane-Dependent Occlusion of the Effector-Binding Site Download bibtex for citation iamge A D Gossert, C B Marshall, J M Jansen, M Ikura, T Nishikawa, W Jahnke, Z Fang
30400 2018-08-31 Chemical Shifts: 1 set
NMR data-driven model of GTPase KRas-GMPPNP:Cmpd2 complex tethered to a nanodisc Inhibition of K-RAS4B by a Unique Mechanism of Action: Stabilizing Membrane-Dependent Occlusion of the Effector-Binding Site Download bibtex for citation iamge A D Gossert, C B Marshall, J M Jansen, M Ikura, T Nishikawa, W Jahnke, Z Fang
26787 2016-09-02 Chemical Shifts: 1 set
Backbone 1H, 13C, and 15N Chemical Shift Assignments for human RIT1 Biochemical Classification of Disease-associated Mutants of RAS-like Protein Expressed in Many Tissues (RIT1) Download bibtex for citation iamge Benjamin G Neel, Christopher B Marshall, Genevieve MC Gasmi-Seabrook, Jiani C Yin, Matthew J Smith, Mitsuhiko Ikura, Mohammad T Mazhab-Jafari, Yang Xu, Zhenhao Fang
25114 2015-05-27 Chemical Shifts: 1 set
NMR data-driven model of GTPase KRas-GDP tethered to a lipid-bilayer nanodisc Oncogenic and RASopathy-associated K-RAS mutations relieve membrane-dependent occlusion of the effector-binding site Download bibtex for citation iamge Benjamin G Neel, Christopher B Marshall, Fuyuhiko Inagaki, Genevieve M C Gasmi-Seabrook, Lewis E Kay, Matthew J Smith, Mitsuhiko Ikura, Mohammad T Mazhab-Jafari, Peter B Stathopoulos
25116 2015-05-27 Chemical Shifts: 1 set
NMR data-driven model of GTPase KRas-GNP:ARafRBD complex tethered to a lipid-bilayer nanodisc Oncogenic and RASopathy-associated K-RAS mutations relieve membrane-dependent occlusion of the effector-binding site Download bibtex for citation iamge Benjamin G Neel, Christopher B Marshall, Fuyuhiko Inagaki, Genevieve M C Gasmi-Seabrook, Lewis E Kay, Matthew J Smith, Mitsuhiko Ikura, Mohammad T Mazhab-Jafari, Peter B Stathopoulos
25115 2015-05-27 Chemical Shifts: 1 set
NMR data-driven model of GTPase KRas-GNP tethered to a lipid-bilayer nanodisc Oncogenic and RASopathy-associated K-RAS mutations relieve membrane-dependent occlusion of the effector-binding site Download bibtex for citation iamge Benjamin G Neel, Christopher B Marshall, Fuyuhiko Inagaki, Genevieve M C Gasmi-Seabrook, Lewis E Kay, Matthew J Smith, Mitsuhiko Ikura, Mohammad T Mazhab-Jafari, Peter B Stathopoulos