Abstract
Tailed bacteriophages and herpesviruses load their capsids with DNA through a tunnel formed by the portal protein assembly. Here we describe the X-ray structure of the bacteriophage SPP1 portal protein in its isolated 13-subunit form and the pseudoatomic structure of a 12-subunit assembly. The first defines the DNA-interacting segments (tunnel loops) that pack tightly against each other forming the most constricted part of the tunnel; the second shows that the functional dodecameric state must induce variability in the loop positions. Structural observations together with geometrical constraints dictate that in the portal-DNA complex, the loops form an undulating belt that fits and tightly embraces the helical DNA, suggesting that DNA translocation is accompanied by a 'mexican wave' of positional and conformational changes propagating sequentially along this belt. © 2007 European Molecular Biology Organization | All Rights Reserved.
Author supplied keywords
Cite
CITATION STYLE
Lebedev, A. A., Krause, M. H., Isidro, A. L., Vagin, A. A., Orlova, E. V., Turner, J., … Antson, A. A. (2007). Structural framework for DNA translocation via the viral portal protein. EMBO Journal, 26(7), 1984–1994. https://doi.org/10.1038/sj.emboj.7601643
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.