DNA binding properties of a chemically synthesized DNA binding domain of hRFX1
- 1 May 1998
- journal article
- research article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 26 (9) , 2143-2149
- https://doi.org/10.1093/nar/26.9.2143
Abstract
The RFX DNA binding domain (DBD) is a novel highly conserved motif belonging to a large number of dimeric DNA binding proteins which have diverse regulatory functions in eukaryotic organisms, ranging from yeasts to human. To characterize this novel motif, solid phase synthesis of a 76mer polypeptide corresponding to the DBD of human hRFX1 (hRFX1/DBD), a prototypical member of the RFX family, has been optimized to yield large quantities (approximately 90 mg) of pure compound. Preliminary two-dimensional1H NMR experiments suggested the presence of helical regions in this sequence in agreement with previously reported secondary structure predictions. In gel mobility shift assays, this synthetic peptide was shown to bind in a cooperative manner the 23mer duplex oligodeoxynucleotide corresponding to the binding site of hRFX1, with a 2:1 stoichoimetry due to an inverse repeat present in the 23mer. The stoichiometry of this complex was reduced to 1:1 by decreasing the length of the DNA sequence to a 13mer oligonucleotide containing a single half-site. Surface plasmon resonance measurements were achieved using this 5'-biotylinated 13mer oligonucleotide immobilized on an avidin-coated sensor chip. Using this method an association constant (K a = 4 x 10(5)/M/s), a dissociation constant (K d = 6 x 10(-2)/s) and an equilibrium dissociation constant (K D = 153 nM) were determined for binding of hRFX1/DBD to the double-stranded 13mer oligonucleotide. In the presence of hRFX1/DBD the melting temperature of the 13mer DNA was increased by 16 degreesC, illustrating stabilization of the double-stranded conformation induced by the peptide.Keywords
This publication has 17 references indexed in Scilit:
- A Consensus Motif in the RFX DNA Binding Domain and Binding Domain Mutants with Altered SpecificityMolecular and Cellular Biology, 1996
- REGULATION OF MHC CLASS II GENES: Lessons from a DiseaseAnnual Review of Immunology, 1996
- RFX Proteins, a Novel Family of DNA Binding Proteins Conserved in the Eukaryotic KingdomNucleic Acids Research, 1996
- A novel DNA-binding regulatory factor is mutated in primary MHC class II deficiency (bare lymphocyte syndrome).Genes & Development, 1995
- The sak1+ Gene of Schizosaccharomyces pombe Encodes an RFX Family DNA-Binding Protein That Positively Regulates Cyclic AMP-Dependent Protein Kinase-Mediated Exit from the Mitotic Cell CycleMolecular and Cellular Biology, 1995
- Binding of the HIV-1 Nucleocapsid Protein to the Primer tRNALys3, inVitro, Is Essentially Not SpecificPublished by Elsevier ,1995
- N,O‐bisFmoc derivatives of N‐(2‐hydroxy‐4‐methoxybenzyl)‐amino acids: Useful intermediates in peptide synthesisJournal of Peptide Science, 1995
- The two novel MHC class II transactivators RFX5 and CIITA both control expression of HLA-DM genesInternational Immunology, 1995
- A revised set of potentials for β‐turn formation in proteinsProtein Science, 1994
- RFX1, a transactivator of hepatitis B virus enhancer I, belongs to a novel family of homodimeric and heterodimeric DNA-binding proteins.Molecular and Cellular Biology, 1994