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Solution structure of the n-terminal domain (TUSP1-N) of the egg case silk from Nephila antipodiana
NMR Experiment Experiment Type Sample Contents Solvent Ionic Strength pH Pressure Temperature (K) Spectrometer 1 2D 1H-15N HSQC 1 mM [U-99% 13C; U-99% 15N] Tusp1-n 90% H2O/10% D2O 5 6.1 ambient 303 2 2D 1H-13C HSQC 1 mM [U-99% 13C; U-99% 15N] Tusp1-n 90% H2O/10% D2O 5 6.1 ambient 303 3 3D HNCA 1 mM [U-99% 13C; U-99% 15N] Tusp1-n 90% H2O/10% D2O 5 6.1 ambient 303 4 3D CBCA(CO)NH 1 mM [U-99% 13C; U-99% 15N] Tusp1-n 90% H2O/10% D2O 5 6.1 ambient 303 5 3D CCH-TOCSY 1 mM [U-99% 13C; U-99% 15N] Tusp1-n 90% H2O/10% D2O 5 6.1 ambient 303 6 4D NOESY 1 mM [U-99% 13C; U-99% 15N] Tusp1-n 90% H2O/10% D2O 5 6.1 ambient 303
NMR Spectrometer Information Spectrometer Manufacturer Model Field Strength 1 Bruker AVANCE 800
NMR Refinement Method Details Software torsion angle dynamics Amber
NMR Ensemble Information Conformer Selection Criteria structures with the lowest energy Conformers Calculated Total Number 100 Conformers Submitted Total Number 10 Representative Model 1 (lowest energy)
Computation: NMR Software # Classification Version Software Name Author 1 refinement Amber 7 Case, Darden, Cheatham, III, Simmerling, Wang, Duke, Luo, and Kollm 2 processing NMRPipe Delaglio, Grzesiek, Vuister, Zhu, Pfeifer and Bax 3 data analysis NMRView Johnson, One Moon Scientific 4 refinement CYANA Guntert, Mumenthaler and Wuthrich