Title of article
The Structure of Xis Reveals the Basis for Filament Formation and Insight into DNA Bending within a Mycobacteriophage Intasome
Author/Authors
Shweta Singh، نويسنده , , Joseph G. Plaks، نويسنده , , Nicholas J. Homa، نويسنده , , Christopher G. Amrich، نويسنده , , Annie Héroux، نويسنده , , Graham F. Hatfull، نويسنده , , Andrew P. VanDemark and Christopher P. Hill، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
11
From page
412
To page
422
Abstract
The recombination directionality factor, Xis, is a DNA bending protein that determines the outcome of integrase-mediated site-specific recombination by redesign of higher-order protein–DNA architectures. Although the attachment site DNA of mycobacteriophage Pukovnik is likely to contain four sites for Xis binding, Xis crystals contain five subunits in the asymmetric unit, four of which align into a Xis filament and a fifth that is generated by an unusual domain swap. Extensive intersubunit contacts stabilize a bent filament-like arrangement with Xis monomers aligned head to tail. The structure implies a DNA bend of ~ 120°, which is in agreement with DNA bending measured in vitro. Formation of attR-containing intasomes requires only Int and Xis, distinguishing Pukovnik from lambda. Therefore, we conclude that, in Pukovnik, Xis-induced DNA bending is sufficient to promote intramolecular Int-mediated bridges during intasome formation.
Keywords
DNA recombination , mycobacteriophage , DNA bending , Xis , structure
Journal title
Journal of Molecular Biology
Serial Year
2014
Journal title
Journal of Molecular Biology
Record number
1255818
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