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Chl1 helicase controls replication fork progression by regulating dNTP pools

Batté, Amandine (author)
Department of Human Genetics, Leiden University Medical Center, Leiden, Netherlands
van der Horst, Sophie C. (author)
Department of Human Genetics, Leiden University Medical Center, Leiden, Netherlands
Tittel-Elmer, Mireille (author)
Department of Human Genetics, Leiden University Medical Center, Leiden, Netherlands; Electrical Engineering, Mathematics and Computer Science, Delft University of Technology, Delft, Netherlands
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Sun, Su Ming (author)
Department of Human Genetics, Leiden University Medical Center, Leiden, Netherlands
Sharma, Sushma (author)
Umeå universitet,Institutionen för medicinsk kemi och biofysik
van Leeuwen, Jolanda (author)
Center for Integrative Genomics, Université de Lausanne, Switzerland
Chabes, Andrei, Professor (author)
Umeå universitet,Institutionen för medicinsk kemi och biofysik
van Attikum, Haico (author)
Department of Human Genetics, Leiden University Medical Center, Leiden, Netherlands
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 (creator_code:org_t)
2022-01-11
2022
English.
In: Life Science Alliance. - : Life Science Alliance, LLC. - 2575-1077. ; 5:4
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Eukaryotic cells have evolved a replication stress response that helps to overcome stalled/collapsed replication forks and ensure proper DNA replication. The replication checkpoint protein Mrc1 plays important roles in these processes, although its functional interactions are not fully understood. Here, we show that MRC1 negatively interacts with CHL1, which encodes the helicase protein Chl1, suggesting distinct roles for these factors during the replication stress response. Indeed, whereas Mrc1 is known to facilitate the restart of stalled replication forks, we uncovered that Chl1 controls replication fork rate under replication stress conditions. Chl1 loss leads to increased RNR1 gene expression and dNTP levels at the onset of S phase likely without activating the DNA damage response. This in turn impairs the formation of RPA-coated ssDNA and subsequent checkpoint activation. Thus, the Chl1 helicase affects RPA-dependent checkpoint activation in response to replication fork arrest by ensuring proper intracellular dNTP levels, thereby controlling replication fork progression under replication stress conditions.

Subject headings

MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Cell- och molekylärbiologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Cell and Molecular Biology (hsv//eng)

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