4.8 Article

Human Stn1 protects telomere integrity by promoting efficient lagging-strand synthesis at telomeres and mediating C-strand fill-in

Journal

CELL RESEARCH
Volume 22, Issue 12, Pages 1681-1695

Publisher

INST BIOCHEMISTRY & CELL BIOLOGY
DOI: 10.1038/cr.2012.132

Keywords

Stn1; telomere replication; G-overhang; pol alpha

Categories

Funding

  1. NIH [R15GM099008]
  2. American Cancer Society Institutional Research Grant [IRG-77-003-32]

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Telomere maintenance is critical for genome stability. The newly-identified Ctc1/Stn1/Ten1 complex is important for telomere maintenance, though its precise role is unclear. We report here that depletion of hStn1 induces catastrophic telomere shortening, DNA damage response, and early senescence in human somatic cells. These phenotypes are likely due to the essential role of hStn1 in promoting efficient replication of lagging-strand telomeric DNA. Downregulation of hStn1 accumulates single-stranded G-rich DNA specifically at lagging-strand telomeres, increases telomere fragility, hinders telomere DNA synthesis, as well as delays and compromises telomeric C-strand synthesis. We further show that hStn1 deficiency leads to persistent and elevated association of DNA polymerase alpha (pol alpha) to telomeres, suggesting that hStn1 may modulate the DNA synthesis activity of pol alpha rather than controlling the loading of pol alpha to telomeres. Additionally, our data suggest that hStn1 is unlikely to be part of the telomere capping complex. We propose that the hStn1 assists DNA polymerases to efficiently duplicate lagging-strand telomeres in order to achieve complete synthesis of telomeric DNA, therefore preventing rapid telomere loss.

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