Evidence That a RecQ Helicase Slows Senescence by Resolving Recombining Telomeres

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Evidence That a RecQ Helicase Slows Senescence by Resolving Recombining Telomeres

RecQ helicases, including Saccharomyces cerevisiae Sgs1p and the human Werner syndrome protein, are important for telomere maintenance in cells lacking telomerase activity. How maintenance is accomplished is only partly understood, although there is evidence that RecQ helicases function in telomere replication and recombination. Here we use two-dimensional gel electrophoresis (2DGE) and telomer...

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Fine tuning of a DNA fork by the RecQ helicase.

Helicases are enzymes that couple the hydrolysis of ATP to the unwinding of duplex nucleic acids (NAs), thus providing the single-stranded NA (ssNA) intermediates necessary for nucleic acid processing and maintenance such as replication, recombination, repair, and transcription (1–3). All helicases possess a core helicase domain containing RecA-like motifs that are responsible for NA binding an...

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Efficient coupling of ATP hydrolysis to translocation by RecQ helicase.

Helicases are ubiquitous enzymes that unwind double-stranded DNA (dsDNA) to reveal single-stranded DNA (ssDNA) during essential processes such as replication, transcription, or repair. The Escherichia coli RecQ protein is a 3' to 5' helicase, which functions in the processes of homologous recombination and replication fork restart. Here, we analyzed the relationship between ATP hydrolysis by Re...

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Evidence that the S.cerevisiae Sgs1 protein facilitates recombinational repair of telomeres during senescence

RecQ DNA helicases, including yeast Sgs1p and the human Werner and Bloom syndrome proteins, participate in telomere biology, but the underlying mechanisms are not fully understood. Here, we explore the protein sequences and genetic interactors of Sgs1p that function to slow the senescence of telomerase (tlc1) mutants. We find that the S-phase checkpoint function of Sgs1p is dispensable for prev...

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The RecQ helicases constitute a small but highly conserved helicase family. Proteins in this family are of particular interest because they are critical to maintenance of genomic stability in prokaryotes and eukaryotes. Eukaryotic RecQ helicase family members have been shown to unwind not only DNA duplexes but also DNAs with alternative structures, including structures stabilized by G quartets ...

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ژورنال

عنوان ژورنال: PLoS Biology

سال: 2007

ISSN: 1545-7885

DOI: 10.1371/journal.pbio.0050160