Structure of apo-CAP reveals that large conformational changes are necessary for DNA binding
暂无分享,去创建一个
Jilie Kong | Thomas A Steitz | T. Steitz | J. Kong | Jimin Wang | Shaoning Yu | Jimin Wang | Shaoning Yu | Hitesh Sharma | H. Sharma
[1] Randy J Read,et al. Electronic Reprint Biological Crystallography Likelihood-enhanced Fast Rotation Functions Biological Crystallography Likelihood-enhanced Fast Rotation Functions , 2003 .
[2] Collaborative Computational,et al. The CCP4 suite: programs for protein crystallography. , 1994, Acta crystallographica. Section D, Biological crystallography.
[3] Kevin Cowtan,et al. research papers Acta Crystallographica Section D Biological , 2005 .
[4] Yusuf Tutar,et al. CRP subunit association and hinge conformation changes in response to cAMP binding: analysis of C-helix cysteine-substituted CRP. , 2006, Biochemistry.
[5] Z. Otwinowski,et al. [20] Processing of X-ray diffraction data collected in oscillation mode. , 1997, Methods in enzymology.
[6] T. Heyduk,et al. Mapping conformational changes in a protein: application of a protein footprinting technique to cAMP-induced conformational changes in cAMP receptor protein. , 1997, Biochemistry.
[7] R. Ebright,et al. Structural basis for cAMP-mediated allosteric control of the catabolite activator protein , 2009, Proceedings of the National Academy of Sciences.
[8] H. Smidt,et al. Molecular basis of halorespiration control by CprK, a CRP-FNR type transcriptional regulator , 2008, Molecular microbiology.
[9] S. Adhya,et al. Sites of allosteric shift in the structure of the cyclic AMP receptor protein , 1985, Cell.
[10] J. Lee,et al. Intersubunit communications in Escherichia coli cyclic AMP receptor protein: studies of the ligand binding domain. , 1992, Biochemistry.
[11] J. Kim,et al. Pivotal role of amino acid at position 138 in the allosteric hinge reorientation of cAMP receptor protein. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[12] Thomas C. Terwilliger,et al. Automated MAD and MIR structure solution , 1999, Acta crystallographica. Section D, Biological crystallography.
[13] T. Steitz,et al. Catabolite gene activator protein: structure, homology with other proteins, and cyclic AMP and DNA binding. , 1983, Cold Spring Harbor symposia on quantitative biology.
[14] J. Krakow,et al. Characterization of the CRPCY core formed after treatment with carboxypeptidase Y. , 1991, Nucleic acids research.
[15] G. Sheldrick. A short history of SHELX. , 2008, Acta crystallographica. Section A, Foundations of crystallography.
[16] Z. Wasylewski,et al. Steady-state and time-resolved fluorescence studies of conformational changes induced by cyclic AMP and DNA binding to cyclic AMP receptor protein from Escherichia coli. , 2003, European journal of biochemistry.
[17] D. J. Schuller,et al. Structure of the CO sensing transcription activator CooA , 2000, Nature Structural Biology.
[18] R. Kerby,et al. Study of Highly Constitutively Active Mutants Suggests How cAMP Activates cAMP Receptor Protein* , 2006, Journal of Biological Chemistry.
[19] J. Zou,et al. Improved methods for building protein models in electron density maps and the location of errors in these models. , 1991, Acta crystallographica. Section A, Foundations of crystallography.
[20] A. Wittinghofer,et al. Capturing cyclic nucleotides in action: snapshots from crystallographic studies , 2007, Nature Reviews Molecular Cell Biology.
[21] T. Steitz,et al. The structure of a CAP-DNA complex having two cAMP molecules bound to each monomer. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[22] J. Lee,et al. Role of residue 138 in the interdomain hinge region in transmitting allosteric signals for DNA binding in Escherichia coli cAMP receptor protein. , 2004, Biochemistry.
[23] W. Delano. The PyMOL Molecular Graphics System , 2002 .
[24] R. Kerby,et al. RcoM: A New Single-Component Transcriptional Regulator of CO Metabolism in Bacteria , 2008, Journal of bacteriology.
[25] H. Komori,et al. Crystal structure of CO-sensing transcription activator CooA bound to exogenous ligand imidazole. , 2007, Journal of molecular biology.
[26] T. Steitz,et al. Crystal structure of a CAP-DNA complex: the DNA is bent by 90 degrees , 1991, Science.
[27] Y. Kyōgoku,et al. Structural understanding of the allosteric conformational change of cyclic AMP receptor protein by cyclic AMP binding. , 2000, Biochemistry.
[28] Z. Otwinowski,et al. Processing of X-ray diffraction data collected in oscillation mode. , 1997, Methods in enzymology.
[29] G. Roberts,et al. Two-State Allosteric Modeling Suggests Protein Equilibrium as an Integral Component for Cyclic AMP (cAMP) Specificity in the cAMP Receptor Protein of Escherichia coli , 2008, Journal of bacteriology.
[30] J Brown,et al. Determination of the Conformations of cAMP Receptor Protein and Its T127L,S128A Mutant with and without cAMP from Small Angle Neutron Scattering Measurements* , 1998, The Journal of Biological Chemistry.
[31] Thomas A. Steitz,et al. Structure of catabolite gene activator protein at 2.9 Å resolution suggests binding to left-handed B-DNA , 1981, Nature.