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Updated: Aug 5, 2026

Real-time Observation of the DNA Strand Exchange Reaction Mediated by Rad51
Published on: February 13, 2019
The trimeric Shu complex in C. elegans is an ATPase that remodels RAD51 filaments in the homologous
Sam Siu Hang Chu1, Guangxin Xing1, Kichang Paik2,3
1Department of Biochemistry, University of Western Ontario, London, Canada.
Abstract:
Homologous recombination (HR) is critical for error-free lesion bypass. This error-free lesion tolerance pathway is initiated by the RAD51 recombinase, which forms nucleoprotein filaments on single-stranded DNA (ssDNA) to facilitate template-directed repair using homologous sister chromatids. RAD51 filaments are tightly regulated by RAD51 mediator proteins. As such mediators, Shu complexes facilitate HR-directed DNA damage tolerance and are evolutionarily conserved from yeast to humans. The Caenorhabditis elegans (C. elegans) Shu complex is a heterotrimer consisting of three protein subunits: RFS-1, RIP-1, and SWS-1. However, the biochemical properties of this trimeric complex remain unclear. Here, we report the biochemical characterization of the C. elegans Shu complex and interactions with DNA, ATP, and RAD-51 filaments. We first revealed that the Shu trimer preferentially binds DNA with an exposed 5' end, particularly favoring a fork-shaped double-stranded DNA (dsDNA). Then, we found that the RFS-1/RIP-1/SWS-1 trimer binds to ATP and exhibits DNA-dependent ATPase activity. Through site-specific mutagenesis, we identified the catalytic residues in the RFS-1 domain and validated the ATPase activity. Using fluorescence-based assays, we further demonstrated that the Shu trimer remodels RAD-51 filaments in an ATP-hydrolysis-dependent manner and stabilizes the filaments in an ATP-binding-dependent manner. Using CRISPR-Cas9-induced disruption of the Walker motif in rfs-1, we demonstrate that the ATPase activity of the C. elegans Shu complex is critical for organismal survival under camptothecin-induced genotoxic stress. These findings provide key mechanistic insights into how the C. elegans Shu complex regulates RAD-51 filament dynamics and primes the filaments for downstream HR-mediated DNA repair processes.
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