2FIO
Phage phi29 transcription regulator p4-DNA complex
Summary for 2FIO
Entry DOI | 10.2210/pdb2fio/pdb |
Descriptor | DNA (41-MER), Late genes activator, ... (4 entities in total) |
Functional Keywords | protein-dna complex; n-hook dna-binding motif; transcription regulation, transcription-dna complex, transcription/dna |
Biological source | Bacillus phage phi29 |
Total number of polymer chains | 4 |
Total formula weight | 55090.54 |
Authors | Badia, D.,Camacho, A.,Perez-Lago, L.,Escandon, C.,Salas, M.,Coll, M. (deposition date: 2005-12-30, release date: 2006-09-26, Last modification date: 2024-02-14) |
Primary citation | Badia, D.,Camacho, A.,Perez-Lago, L.,Escandon, C.,Salas, M.,Coll, M. The structure of phage phi29 transcription regulator p4-DNA complex reveals an N-hook motif for DNA Mol.Cell, 22:73-81, 2006 Cited by PubMed Abstract: Protein p4 affects the transcriptional switch that divides bacteriophage phi29 infection in early and late phases. The synthesis of DNA replication proteins and p4 takes place in the early phase, while structural, morphogenesis, and lysis proteins are synthesized in the late phase. Transcriptional switch by p4 is achieved by activating the late promoter A3 and repressing the early promoters A2b and A2c. The crystal structure of p4 alone and in complex with a 41 bp DNA, including the A3 promoter binding site, helps us to understand how the phage cycle is controlled. Protein p4 has a unique alpha/beta fold that includes a DNA recognition motif consisting of two N-terminal beta turn substructures, or N-hooks, located at the tips of an elongated protein homodimer. The two N-hooks enter the major groove of the double helix, establishing base-specific contacts. A high DNA curvature allows p4 N-hooks to reach two major groove areas three helical turns apart, like a bow and its string. PubMed: 16600871DOI: 10.1016/j.molcel.2006.02.019 PDB entries with the same primary citation |
Experimental method | X-RAY DIFFRACTION (2.7 Å) |
Structure validation
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