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  1. 1.   Unequivocal determination of caulamidines A and B: application and validation of new tools in the structure elucidation tool box
  2. Milanowski, Dennis J.; Oku, Naoya; Cartner, Laura; Bokesch, Heidi; Williamson, R. Thomas; Sauri, Josep; Liu, Yizhou; Blinov, Kirill A.; Ding, Yuanqing; Li, Xing-Cong; Ferreira, Daneel; Walker, Larry A.; Khan, Shabana; Davies-Coleman, Michael T.; Kelley, Jim; McMahon, James B.; Martin, Gary E.; Gustafson, Kirk
  3. Chemical Science. 2018, Jan 14; 9(2): 307-314.
  1. 2.   Recognition of Multivalent Histone States Associated with Heterochromatin by UHRF1 Protein
  2. Nady, N.; Lemak, A.; Walker, J. R.; Avvakumov, G. V.; Kareta, M. S.; Achour, M.; Xue, S.; Duan, S. L.; Allali-Hassani, A.; Zuo, X. B.; Wang, Y. X.; Bronner, C.; Chedin, F.; Arrowsmith, C. H.; Dhe-Paganon, S.
  3. Journal of Biological Chemistry. 2011, Jul; 286(27): 24300-24311.
  1. 3.   Rapid global structure determination of large RNA and RNA complexes using NMR and small-angle X-ray scattering
  2. Wang, Y. X.; Zuo, X. B.; Wang, J. B.; Yu, P.; Butcher, S. E.
  3. Methods. 2010, Oct; 52(2): 180-191.
  1. 4.   The role of dynamic conformational ensembles in biomolecular recognition
  2. Boehr, D. D.; Nussinov, R.; Wright, P. E.
  3. Nature Chemical Biology. 2009 5(11): 789-796.
  1. 5.   Determination of Multicomponent Protein Structures in Solution Using Global Orientation and Shape Restraints
  2. Wang, J. B.; Zuo, X. B.; Yu, P.; Byeon, I.; Jung, J. W.; Wang, X. X.; Dyba, M.; Seifert, S.; Schwieters, C. D.; Qin, J.; Gronenborn, A. M.; Wang, Y. X.
  3. Journal of the American Chemical Society. 2009 131(30): 10507-10515.
  1. 6.   A Method for Helical RNA Global Structure Determination in Solution Using Small-Angle X-Ray Scattering and NMR Measurements
  2. Wang, J. B.; Zuo, X. B.; Yu, P.; Xu, H.; Starich, M. R.; Tiede, D. M.; Shapiro, B. A.; Schwieters, C. D.; Wang, Y. X.
  3. Journal of Molecular Biology. 2009 393(3): 717-734.
  1. 7.   Structural Basis of Focal Adhesion Localization of LIM-only Adaptor PINCH by Integrin-linked Kinase
  2. Yang, Y. W.; Wang, X. X.; Hawkins, C. A.; Chen, K.; Vaynberg, J.; Mao, X.; Tu, Y. Z.; Zuo, X. B.; Wang, J. B.; Wang, Y. X.; Wu, C. Y.; Tjandra, N.; Qin, J.
  3. Journal of Biological Chemistry. 2009 284(9): 5836-5844.
  1. 8.   Structure and dynamics of micelle-associated human immunodeficiency virus gp41 fusion domain
  2. Jaroniec, C. P.; Kaufman, J. D.; Stahl, S. J.; Viard, M.; Blumenthal, R.; Wingfield, P. T.; Bax, A.
  3. Biochemistry. 2005, DEC 13; 44(49): 16167-16180.
  1. 9.   Determining a helical protein structure using peptide pixels
  2. Walsh, J. D.; Kuszweski, J.; Wang, Y. X.
  3. Journal of Magnetic Resonance. 2005, NOV; 177(1): 155-159.
  1. 10.   Periodicity, planarity, residual dipolar coupling, and structures
  2. Walsh, J. D.; Wang, Y. X.
  3. Journal of Magnetic Resonance. 2005, MAY; 174(1): 152-162.
  1. 11.   Detection of C ' C-alpha correlations in proteins using a new time- and sensitivity-optimal experiment
  2. Lee, D.; Vogeli, B.; Pervushin, K.
  3. Journal of Biomolecular Nmr. 2005, APR; 31(4): 273-278.
  1. 12.   Efficient and precise measurement of H-alpha-C-alpha, C-alpha-C ', C-alpha-C-beta and H-N-N residual dipolar couplings from 2D H-N-N correlation spectra
  2. McFeeters, R.; Fowler, C.; Gaponenko, V.; Byrd, R.
  3. Journal of Biomolecular Nmr. 2005, JAN; 31(1): 35-47.
  1. 13.   Solution structure of the pseudo-5 ' splice site of a retroviral splicing suppressor
  2. Cabello-Villegas, J.; Giles, K. E.; Soto, A. M.; Yu, P.; Mougin, A.; Beemon, K. L.; Wang, Y. X.
  3. Rna-a Publication of the Rna Society. 2004, SEP; 10(9): 1388-1398.
  1. 14.   Improving the accuracy of NMR structures of large proteins using pseudocontact shifts as long-range restraints
  2. Gaponenko, V.; Sarma, S. P.; Altieri, A. S.; Horita, D. A.; Li, J.; Byrd, R. A.
  3. Journal of Biomolecular Nmr. 2004 28(3): 205-212.
  1. 15.   Periodicity in residual dipolar couplings and nucleic acid structures
  2. Walsh, J. D.; Cabello-Villegas, J.; Wang, Y. X.
  3. Journal of the American Chemical Society. 2004 126(7): 1938-1939.
  1. 16.   Completely automated, highly error-tolerant macromolecular structure determination from multidimensional nuclear overhauser enhancement spectra and chemical shift assignments
  2. Kuszewski, J.; Schwieters, C. D.; Garrett, D. S.; Byrd, R. A.; Tjandra, N.; Clore, G. M.
  3. Journal of the American Chemical Society. 2004 126(20): 6258-6273.
  1. 17.   Breaking symmetry in the structure determination of (large) symmetric protein dimers
  2. Gaponenko, V.; Altieri, A. S.; Li, J.; Byrd, R. A.
  3. Journal of Biomolecular Nmr. 2002 24(2): 143-148.
  1. 18.   The domain-swapped dimer of cyanovirin-N is in a metastable folded state: Reconciliation of X-ray and NMR structures
  2. Barrientos, L. G.; Louis, J. M.; Botos, I.; Mori, T.; Han, Z. Z.; O'Keefe, B. R.; Boyd, M. R.; Wlodawer, A.; Gronenborn, A. M.
  3. Structure. 2002 10(5): 673-686.
  1. 19.   Assigning Molecular Configuration by Nuclear Magnetic Resonance
  2. Gustafson, Kirk; Chan, Susanna T. S.; Liu, Yizhou
  3. 2017; (MODERN NMR APPROACHES TO THE STRUCTURE ELUCIDATION OF NATURAL PRODUCTS, VOL 2: DATA ACQUISITION AND APPLICATIONS TO COMPOUND CLASSES): 39-70.
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