Characterization of the Caenorhabditis elegans HIM-6/BLM helicase: Unwinding recombination intermediates

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Abstract

Mutations in three human RecQ genes are implicated in heritable human syndromes. Mutations in BLM, a RecQ gene, cause Bloom syndrome (BS), which is characterized by short stature, cancer predisposition, and sensitivity to sunlight. BLM is a RecQ DNA helicase that, with interacting proteins, is able to dissolve various DNA structures including double Holliday junctions. A BLM ortholog, him-6, has been identified in Caenorhabditis elegans, but little is known about its enzymatic activities or its in vivo roles. By purifying recombinant HIM-6 and performing biochemical assays, we determined that the HIM-6 has DNA-dependent ATPase activity HIM-6 and helicase activity that proceeds in the 3′-5′ direction and needs at least five 3′ overhanging nucleotides. HIM-6 is also able to unwind DNA structures including D-loops and Holliday junctions. Worms with him-6 mutations were defective in recovering the cell cycle arrest after HU treatment. These activities strongly support in vivo roles for HIM-6 in processing recombination intermediates. © 2014 Jung et al.

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Jung, H., Lee, J. A., Choi, S., Lee, H., & Ahn, B. (2014). Characterization of the Caenorhabditis elegans HIM-6/BLM helicase: Unwinding recombination intermediates. PLoS ONE, 9(7). https://doi.org/10.1371/journal.pone.0102402

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