Amiard Simon, Doudeau Michel, Pinte Sébastien, Poulet Anaïs, Lenain Christelle, Faivre-Moskalenko Cendrine, Angelov Dimitar, Hug Nele, Vindigni Alessandro, Bouvet Philippe, Paoletti Jacques, Gilson Eric, Giraud-Panis Marie-Josèphe
Laboratoire de Biologie Moléculaire de la Cellule de l'Ecole Normale Supérieure de Lyon, CNRS UMR 5161, IFR128, 46 Allée d'Italie, 69364 Lyon Cedex 07, France.
Nat Struct Mol Biol. 2007 Feb;14(2):147-54. doi: 10.1038/nsmb1192. Epub 2007 Jan 14.
Telomeres can fold into t-loops that may result from the invasion of the 3' overhang into duplex DNA. Their formation is facilitated in vitro by the telomeric protein TRF2, but very little is known regarding the mechanisms involved. Here we reveal that TRF2 generates positive supercoiling and condenses DNA. Using a variety of TRF2 mutants, we demonstrate a strong correlation between this topological activity and the ability to stimulate strand invasion. We also report that these properties require the combination of the TRF-homology (TRFH) domain of TRF2 with either its N- or C-terminal DNA-binding domains. We propose that TRF2 complexes, by constraining DNA around themselves in a right-handed conformation, can induce untwisting of the neighboring DNA, thereby favoring strand invasion. Implications of this topological model in t-loop formation and telomere homeostasis are discussed.
端粒可折叠成t环,这可能是由3'端悬垂侵入双链DNA所致。端粒蛋白TRF2在体外可促进其形成,但对于其中涉及的机制却知之甚少。在此,我们揭示TRF2可产生正超螺旋并使DNA凝聚。通过使用多种TRF2突变体,我们证明了这种拓扑活性与刺激链侵入能力之间存在很强的相关性。我们还报告称,这些特性需要TRF2的TRF同源(TRFH)结构域与其N端或C端DNA结合结构域相结合。我们提出,TRF2复合物通过以右手构象将DNA约束在自身周围,可诱导相邻DNA解旋,从而有利于链侵入。本文讨论了这种拓扑模型在t环形成和端粒稳态中的意义。
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