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FAN1 activity on asymmetric repair intermediates is mediated by an atypical monomeric virus-type replication-repair nuclease domainCoordination of structure-specific nucleases by human SLX4/BTBD12 is required for DNA repairIdentification of KIAA1018/FAN1, a DNA repair nuclease recruited to DNA damage by monoubiquitinated FANCD2Analysis of the Intrinsically Disordered N-Terminus of the DNA Junction-Resolving Enzyme T7 Endonuclease I: Identification of Structure Formed upon DNA BindingMetal ions bound at the active site of the junction-resolving enzyme T7 endonuclease IThe structural basis of Holliday junction resolution by T7 endonuclease IThe Caenorhabditis elegans homolog of Gen1/Yen1 resolvases links DNA damage signaling to DNA double-strand break repairMechanistic aspects of the DNA junction-resolving enzyme T7 endonuclease I.TRF2 promotes, remodels and protects telomeric Holliday junctions.Reverse gyrase, the two domains intimately cooperate to promote positive supercoiling.Extensive central disruption of a four-way junction on binding CCE1 resolving enzyme.The importance of the N-terminus of T7 endonuclease I in the interaction with DNA junctions.The complex between a four-way DNA junction and T7 endonuclease I.Crystal Structure of a Eukaryotic GEN1 Resolving Enzyme Bound to DNA.GEN1 from a thermophilic fungus is functionally closely similar to non-eukaryotic junction-resolving enzymes.Cooperative control of holliday junction resolution and DNA repair by the SLX1 and MUS81-EME1 nucleases.Analyzing reverse gyrase activity.The active site of the junction-resolving enzyme T7 endonuclease I.Metal ion binding in the active site of the junction-resolving enzyme T7 endonuclease I in the presence and in the absence of DNA.Electrostatic interactions and the folding of the four-way DNA junction: analysis by selective methyl phosphonate substitution.Stereospecific effects determine the structure of a four-way DNA junction.Biochemical and Structural Properties of Fungal Holliday Junction-Resolving Enzymes.Structural dynamics of individual Holliday junctions.Structural recognition between a four-way DNA junction and a resolving enzyme.A monovalent ion in the DNA binding interface of the eukaryotic junction-resolving enzyme GEN1Single-molecule studies of DNA and RNA four-way junctions[12] Reverse gyrases from bacteria and archaeaYeast Resolving Enzyme CCE1 Makes Sequential Cleavages in DNA Junctions within the Lifetime of the Complex†Junction resolving enzymes use multivalency to keep the Holliday junction dynamic
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Anne-Cécile Déclais
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0000-0002-1904-6469