Cottee MA, et al. (2021) Structure of a Ty1 restriction factor reveals the molecular basis of transposition copy number control. Nat Commun 12(1):5590 PMID:34552077
Liu J, et al. (2015) Structural basis of DNA recognition by PCG2 reveals a novel DNA binding mode for winged helix-turn-helix domains. Nucleic Acids Res 43(2):1231-40 PMID:25550425
Pancevac C, et al. (2010) Structure of the Rna15 RRM-RNA complex reveals the molecular basis of GU specificity in transcriptional 3'-end processing factors. Nucleic Acids Res 38(9):3119-32 PMID:20097654
Nair M, et al. (2003) NMR structure of the DNA-binding domain of the cell cycle protein Mbp1 from Saccharomyces cerevisiae. Biochemistry 42(5):1266-73 PMID:12564929
Durocher D, et al. (2000) The molecular basis of FHA domain:phosphopeptide binding specificity and implications for phospho-dependent signaling mechanisms. Mol Cell 6(5):1169-82 PMID:11106755
McIntosh PB, et al. (2000) The influence of DNA binding on the backbone dynamics of the yeast cell-cycle protein Mbp1. J Biomol NMR 16(3):183-96 PMID:10805125
Taylor IA, et al. (2000) Characterization of the DNA-binding domains from the yeast cell-cycle transcription factors Mbp1 and Swi4. Biochemistry 39(14):3943-54 PMID:10747782
Foord R, et al. (1999) X-ray structural analysis of the yeast cell cycle regulator Swi6 reveals variations of the ankyrin fold and has implications for Swi6 function. Nat Struct Biol 6(2):157-65 PMID:10048928
McIntosh PB, et al. (1999) 1H, 15N and 13C assignments of the DNA binding domain of transcription factor Mbp1 from S. cerevisiae in both its free and the DNA bound forms, and 1H assignments of the free DNA. J Biomol NMR 13(4):397-8 PMID:10353201
Taylor IA and Smerdon SJ (1997) Expression, purification, and crystallization of the DNA-binding domain from the Saccharomyces cerevisae cell-cycle transcription factor MBP-1. Proteins 27(2):325-7 PMID:9061798
Taylor IA, et al. (1997) The X-ray structure of the DNA-binding domain from the Saccharomyces cerevisiae cell-cycle transcription factor Mbp1 at 2.1 A resolution. J Mol Biol 272(1):1-8 PMID:9299332