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Journal of Biomolecular NMR|December 7, 2005
Describing partially unfolded states of proteins from sparse NMR dataGloria Fuentes, Aart J Nederveen, Robert Kaptein, et al.Biochemistry|January 19, 2005
Structural properties of the promiscuous VP16 activation domainHendrik R A Jonker, Rainer W Wechselberger, Rolf Boelens, et al.Journal of Molecular Biology|March 5, 1985
A protein structure from nuclear magnetic resonance data. lac repressor headpieceR Kaptein, E R Zuiderweg, R M Scheek, et al.Nature|August 9, 1990
Structure of Arc repressor in solution: evidence for a family of beta-sheet DNA-binding proteinsJ N Breg, J H van Opheusden, M J Burgering, et al.European Journal of Biochemistry|February 1, 1995
Solution structure of porcine pancreatic procolipase as determined from 1H homonuclear two-dimensional and three-dimensional NMRJ N Breg, L Sarda, P J Cozzone, et al.Biochemistry|December 2, 1986
Kringle 4 from human plasminogen: a proton magnetic resonance study via two-dimensional photochemically induced dynamic nuclear polarization spectroscopyA De Marco, L Zetta, A M Petros, et al.Protein Engineering|December 1, 1994
LexA repressor and iron uptake regulator from Escherichia coli: new members of the CAP-like DNA binding domain superfamilyL Holm, C Sander, H Rüterjans, et al.FEBS Letters|September 3, 1984
Spatial arrangement of the three alpha helices in the solution conformation of E. coli lac repressor DNA-binding domainE R Zuiderweg, M Billeter, R Boelens, et al.Nucleic Acids Research|May 11, 2013
The Fanconi anemia associated protein FAAP24 uses two substrate specific binding surfaces for DNA recognitionHans Wienk, Jack C Slootweg, Sietske Speerstra, et al.Biochimie|July 1, 1985
Determination of protein structures from nuclear magnetic resonance data using a restrained molecular dynamics approach: the lac repressor DNA binding domainE R Zuiderweg, R M Scheek, R Boelens, et al.Pageof 1,238