Magnesium is required for specific DNA binding of the CREB B-ZIP domain.
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C. Vinson | J. Gal | A. Mir | J. Moll | A. Acharya | Jonathan R. Moll
[1] D. Crothers,et al. DNA-binding domains of Fos and Jun do not induce DNA curvature: an investigation with solution and gel methods. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[2] Edward R. Ashwood,et al. Tietz Fundamentals of Clinical Chemistry , 1996 .
[3] F. Studier,et al. Use of bacteriophage T7 RNA polymerase to direct selective high-level expression of cloned genes. , 1986, Journal of molecular biology.
[4] U. Schibler,et al. DNA-binding specificity of PAR and C/EBP leucine zipper proteins: a single amino acid substitution in the C/EBP DNA-binding domain confers PAR-like specificity to C/EBP. , 1996, Biological chemistry.
[5] S. Diekmann,et al. Temperature and salt dependence of the gel migration anomaly of curved DNA fragments , 1987, Nucleic Acids Res..
[6] A. Mirzabekov,et al. Massive parallel analysis of the binding specificity of histone-like protein HU to single- and double-stranded DNA with generic oligodeoxyribonucleotide microchips. , 2001, Nucleic acids research.
[7] Toshio Hakoshima,et al. Structural basis for the diversity of DNA recognition by bZIP transcription factors , 2000, Nature Structural Biology.
[8] S. McKnight,et al. Evidence of changes in protease sensitivity and subunit exchange rate on DNA binding by C/EBP. , 1990, Science.
[9] Tsonwin Hai,et al. Cross-family dimerization of transcription factors Fos/Jun and ATF/CREB alters DNA binding specificity. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[10] K. Struhl,et al. The GCN4 basic region leucine zipper binds DNA as a dimer of uninterrupted α Helices: Crystal structure of the protein-DNA complex , 1992, Cell.
[11] D. Ginty,et al. A Dominant-Negative Inhibitor of CREB Reveals that It Is a General Mediator of Stimulus-Dependent Transcription of c-fos , 1998, Molecular and Cellular Biology.
[12] A. Somlyo,et al. Beta-adrenergic effects on cellular Na, Mg, Ca, K and Cl in vascular smooth muscle: electron probe analysis of rabbit pulmonary artery. , 1992, Cell calcium.
[13] H. Kato,et al. Depolarization triggers intracellular magnesium surge in cultured dorsal root ganglion neurons , 1998, Brain Research.
[14] M. Schumacher,et al. Consensus and Variant cAMP-regulated Enhancers Have Distinct CREB-binding Properties* , 2001, The Journal of Biological Chemistry.
[15] H. Kato,et al. Intracellular Mg2+ surge follows Ca2+ increase during depolarization in cultured neurons , 1999, Brain Research.
[16] M. Olive,et al. A Dominant Negative to Activation Protein-1 (AP1) That Abolishes DNA Binding and Inhibits Oncogenesis* , 1997, The Journal of Biological Chemistry.
[17] H. Hurst,et al. Transcription factors. 1: bZIP proteins. , 1994, Protein profile.
[18] W. DeGrado,et al. Design of DNA-binding peptides based on the leucine zipper motif. , 1990, Science.
[19] T. Lohman,et al. Thermodynamic analysis of ion effects on the binding and conformational equilibria of proteins and nucleic acids: the roles of ion association or release, screening, and ion effects on water activity , 1978, Quarterly Reviews of Biophysics.
[20] A. Berk,et al. A mechanism for TAFs in transcriptional activation: activation domain enhancement of TFIID-TFIIA--promoter DNA complex formation. , 1994, Genes & development.
[21] P. Molloy,et al. Base preferences for DNA binding by the bHLH-Zip protein USF: effects of MgCl2 on specificity and comparison with binding of Myc family members. , 1994, Nucleic acids research.
[22] A. Shaywitz,et al. CREB: a stimulus-induced transcription factor activated by a diverse array of extracellular signals. , 1999, Annual review of biochemistry.
[23] D. Reinberg,et al. Protein-protein interactions in eukaryotic transcription initiation: structure of the preinitiation complex. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[24] Martha L. Bulyk,et al. Quantifying DNA–protein interactions by double-stranded DNA arrays , 1999, Nature Biotechnology.
[25] S. McKnight,et al. Scissors-grip model for DNA recognition by a family of leucine zipper proteins. , 1989, Science.
[26] J. Burch,et al. Chicken vitellogenin gene-binding protein, a leucine zipper transcription factor that binds to an important control element in the chicken vitellogenin II promoter, is related to rat DBP , 1991, Molecular and cellular biology.
[27] M. Bond,et al. Calcium content of mitochondria and endoplasmic reticulum in liver frozen rapidly in vivo , 1985, Nature.
[28] T. Lohman,et al. Ion effects on ligand-nucleic acid interactions. , 1976, Journal of molecular biology.
[29] M. Olive,et al. Attractive Interhelical Electrostatic Interactions in the Proline- and Acidic-rich Region (PAR) Leucine Zipper Subfamily Preclude Heterodimerization with Other Basic Leucine Zipper Subfamilies* , 2000, The Journal of Biological Chemistry.
[30] G. Felsenfeld,et al. The physical and chemical properties of nucleic acids. , 1967, Annual review of biochemistry.
[31] N. Jones,et al. Heterodimer formation between CREB and JUN proteins. , 1990, Oncogene.
[32] P. Danoy,et al. Broad binding-site specificity and affinity properties of octamer 1 and brain octamer-binding proteins. , 1993, European journal of biochemistry.
[33] I. Reynolds,et al. Glutamate-induced increases in intracellular free Mg2+ in cultured cortical neurons , 1993, Neuron.
[34] J. N. Mark Glover,et al. Crystal structure of the heterodimeric bZIP transcription factor c-Fos–c-Jun bound to DNA , 1995, Nature.
[35] G. Felsenfeld,et al. The interaction of polynucleotides with cations. , 1959, Biochimica et biophysica acta.
[36] M. Schumacher,et al. The Structure of a CREB bZIP·Somatostatin CRE Complex Reveals the Basis for Selective Dimerization and Divalent Cation-enhanced DNA Binding* , 2000, The Journal of Biological Chemistry.
[37] D. Auble,et al. An ATP-dependent inhibitor of TBP binding to DNA. , 1993, Genes & development.
[38] Michael R. Green,et al. Expressing the human genome , 2001, Nature.
[39] T. Richmond,et al. Crystal structure of a bZIP/DNA complex at 2.2 A: determinants of DNA specific recognition. , 1995, Journal of molecular biology.
[40] M. Olive,et al. Extending dimerization interfaces: the bZIP basic region can form a coiled coil. , 1995, The EMBO journal.