Cell Reports · 2017 · 47 citations · 32 references
Molecular BiologyMolecular GeneticsHeteroduplex Dna JointsTandem AssembliesGenome EngineeringBiophysicsRad51 FilamentsGenome InstabilityNuclear OrganizationIterative Srs2Supramolecular ChemistryStructural BiologyChromatin FunctionNatural SciencesGenome IntegrityMolecular ComplexRecombination DynamicSystems BiologyMedicineRad51 Presynaptic Complexes
Srs2 is a superfamily 1 (SF1) helicase and antirecombinase that is required for genome integrity. However, the mechanisms that regulate Srs2 remain poorly understood. Here, we visualize Srs2 as it acts upon single-stranded DNA (ssDNA) bound by the Rad51 recombinase. We demonstrate that Srs2 is a processive translocase capable of stripping thousands of Rad51 molecules from ssDNA at a rate of ∼50 monomers/s. We show that Srs2 is recruited to RPA clusters embedded between Rad51 filaments and that multimeric arrays of Srs2 assemble during translocation on ssDNA through a mechanism involving iterative Srs2 loading events at sites cleared of Rad51. We also demonstrate that Srs2 acts on heteroduplex DNA joints through two alternative pathways, both of which result in rapid disruption of the heteroduplex intermediate. On the basis of these findings, we present a model describing the recruitment and regulation of Srs2 as it acts upon homologous recombination intermediates.
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DNA helicase Srs2 disrupts the Rad51 presynaptic filament
Lumír Krejčí, Stephen Van Komen, Ying Li et al. · Nature · 2003 · 629 citations
The Srs2 helicase prevents recombination by disrupting Rad51 nucleoprotein filaments
Xavier Veaute, Josette Jeusset, Christine Soustelle et al. · Nature · 2003 · 612 citations
DNA Sequence Alignment by Microhomology Sampling during Homologous Recombination
Zhi Qi, Sy Redding, Ja Yil Lee et al. · Cell · 2015 · 223 citations · Full text