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Entry ID Original Release date Data summary Entry Title Citation Title Authors
15586 2008-03-13 Chemical Shifts: 1 set
alpha-RgIA, a Novel Conotoxin that Blocks the nAChR alpha-RgIA, a Novel Conotoxin That Blocks the alpha9alpha10 nAChR: Structure and Identification of Key Receptor-Binding Residues. Download bibtex for citation iamge Anthony Park, Baldomero Olivera, Michael Ellison, Michael McIntosh, Raymond Norton, Xuecheng Zhang, Zhi-Ping Feng
15436 2008-03-13 Chemical Shifts: 1 set
alpha-RgIA, a Novel Conotoxin That Blocks the alpha9alpha10 nAChR alpha-RgIA, a Novel Conotoxin That Blocks the alpha9alpha10 nAChR: Structure and Identification of Key Receptor-Binding Residues. Download bibtex for citation iamge Anthony J Park, Baldomero M Olivera, Michael Ellison, Michael J McIntosh, Raymond S Norton, Xuecheng Zhang, Zhi-Ping Feng
15435 2008-03-13 Chemical Shifts: 1 set
alpha-RgIA, a Novel Conotoxin That Blocks the alpha9alpha10 nAChR alpha-RgIA, a Novel Conotoxin That Blocks the alpha9alpha10 nAChR: Structure and Identification of Key Receptor-Binding Residues. Download bibtex for citation iamge Anthony J Park, Baldomero M Olivera, J Michael McIntosh, Michael Ellison, Raymond S Norton, Xuecheng Zhang, Zhi-Ping Feng
15367 2008-03-13 Chemical Shifts: 1 set
RgIA, a Novel Conotoxin that Blocks the nAChR alpha-RgIA, a Novel Conotoxin That Blocks the alpha9alpha10 nAChR: Structure and Identification of Key Receptor-Binding Residues Download bibtex for citation iamge Anthony Park, Baldomero M Olivera, Michael Ellison, Michael J McIntosh, Raymond S Norton, Xuecheng Zhang, Zhi-Ping Feng
15368 2008-03-13 Chemical Shifts: 1 set
RgIA, a Novel Conotoxin that Blocks the nAChR alpha-RgIA, a Novel Conotoxin That Blocks the alpha9alpha10 nAChR: Structure and Identification of Key Receptor-Binding Residues Download bibtex for citation iamge Anthony J Park, Baldomero M Olivera, Michael Ellison, Michael J McIntosh, Raymond S Norton, Xuecheng Zhang, Zhi-Ping Feng
4769 2001-05-03 Chemical Shifts: 1 set
Backbone 1H, 13C and 15N assignments for yeast ubiquitin at pH 7.5 Identification of the Ubiquitin Interfacial Residues in a Ubiquitin-E2 Covalent Complex Download bibtex for citation iamge Gary S Shaw, Katherine S Hamilton, Michael J Ellison
4567 2000-04-03 Chemical Shifts: 1 set
1H, 15N and 13C resonance assignments for the catalytic domain of the yeast E2, UBC1 Letter to the Editor: 1H, 15N and 13C Resonance Assignments for the Catalytic Domain of the Yeast E2, UBC1 Download bibtex for citation iamge Gary S Shaw, Katherine S Hamilton, Michael J Ellison