467D image
Deposition Date 1999-04-22
Release Date 2000-04-22
Last Version Date 2023-12-27
Entry Detail
PDB ID:
467D
Keywords:
Title:
The structure of a decamer forming a four-way junction
Biological Source:
Source Organism:
Method Details:
Experimental Method:
Resolution:
2.16 Å
R-Value Free:
0.28
R-Value Work:
0.24
R-Value Observed:
0.25
Space Group:
C 1 2 1
Macromolecular Entities
Polymer Type:polydeoxyribonucleotide
Molecule:DNA (5'-D(*CP*CP*GP*GP*GP*AP*CP*CP*GP*G)-3')
Chain IDs:A, B
Chain Length:10
Number of Molecules:2
Biological Source:
Primary Citation
Crystal structure of a DNA Holliday junction
Nat.Struct.Biol. 6 913 917 (1999)
PMID: 10504723 DOI: 10.1038/13277

Abstact

DNA recombination is a universal biological event responsible both for the generation of genetic diversity and for the maintenance of genome integrity. A four-way DNA junction, also termed Holliday junction, is the key intermediate in nearly all recombination processes. This junction is the substrate of recombination enzymes that promote branch migration or catalyze its resolution. We have determined the crystal structure of a four-way DNA junction by multiwavelength anomalous diffraction, and refined it to 2.16 A resolution. The structure has two-fold symmetry, with pairwise stacking of the double-helical arms, which form two continuous B-DNA helices that run antiparallel, cross in a right-handed way, and contain two G-A mismatches. The exchanging backbones form a compact structure with strong van der Waals contacts and hydrogen bonds, implying that a conformational change must occur for the junction to branch-migrate or isomerize. At the branch point, two phosphate groups from one helix occupy the major groove of the other one, establishing sequence-specific hydrogen bonds. These interactions, together with different stacking energies and steric hindrances, explain the preference for a particular junction stacked conformer.

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