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Convergent evolution of MutS and topoisomerase II for clamping DNA crossovers and stacked Holliday junctions
1Institut de Biologie Physico-Chimique, CNRS, Paris, France. timsit@ibpc.fr
Journal of Biomolecular Structure & Dynamics
|November 8, 2001
Abstract:
This study shows that topoisomerase II and MutS proteins share a structural motif that has, in its dimeric form, a suitable geometry for clamping the two arms of either right-handed DNA crossovers or their isostructural stacked Holliday junctions. This defines a new protein family selected by convergent evolution for sensing DNA topology and binding recombination intermediates. This study also proposes that MutS binding on 2-fold right-handed crossover provides a mechanism for strand discrimination during DNA translocation.