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A Repository for Data from NMR Spectroscopy on Proteins, Peptides, Nucleic Acids, and other Biomolecules
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CS-Rosetta Results Access

Results for submission SeV Ntail(443-501).

BMRB ID: 15123

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Graph for SeV Ntail(443-501)

Lowest energy structure: S_06412

RMSD against lowest energy structure for all residues

StructureScore
S_06412.pdb7.7208
S_04988.pdb7.6076
S_00524.pdb6.9801
S_04345.pdb7.9446
S_09540.pdb9.0319
S_02442.pdb6.8623
S_07668.pdb8.1062
S_08775.pdb6.9829
S_01562.pdb7.0997
S_01595.pdb6.9683
Averaged Ca-rmsd7.530 +/- 0.695

RMSD against lowest energy structure for residues 30-34

StructureScore
S_06412.pdb2.1043
S_04988.pdb2.0071
S_00524.pdb2.7571
S_04345.pdb2.0756
S_09540.pdb2.3100
S_02442.pdb2.0828
S_07668.pdb2.3254
S_08775.pdb2.4896
S_01562.pdb2.3470
S_01595.pdb2.4091
Averaged Ca-rmsd2.291 +/- 0.231

This entry was calculated with Rosetta version 3.5 and version 3.2 of the CS-Rosetta Toolbox.

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Citation information:

"Determination of solution structures of proteins up to 40 kDa using CS-Rosetta with sparse NMR data from deuterated samples" Oliver F. Lange; Paolo Rossi; Nikolaos G. Sgourakis; Yifan Song; Hsiau-Wei Lee; James M. Aramini; Asli Ertekin; Rong Xiao; Thomas B. Acton; Gaetano T. Montelione; David Baker; Proceedings of the National Academy of Sciences 109(27) 10873-10878 (2012) doi: 10.1073/pnas.1203013109

"De novo structure generation using chemical shifts for proteins with high-sequence identity but different folds," Yang Shen; Philip N. Bryan; Yanan He; John Orban; David Baker; Ad Bax; Protein Science 19, 349-356 (2010) doi: 10.1002/pro.303

"De novo protein structure generation from incomplete chemical shift assignments," Yang Shen; Robert Vernon; David Baker; Ad Bax; J. Biomol. NMR 43, 63-78 (2009) doi: 10.1007/s10858-008-9288-5

"Consistent blind protein structure generation from NMR chemical shift data," Yang Shen; Oliver Lange; Frank Delaglio; Paolo Rossi; James M. Aramini; Gaohua Liu; Alexander Eletsky; Yibing Wu; Kiran K. Singarapu; Alexander Lemak; Alexandr Ignatchenko; Cheryl H. Arrowsmith; Thomas Szyperski; Gaetano T. Montelione; David Baker; Ad Bax; Proceedings of the National Academy of Sciences 105(12) 4685-4690 (2008) doi: 10.1073/pnas.0800256105