Structural Insights into Yeast Telomerase Recruitment to Telomeres

Hongwen Chen, Jing Xue, Dmitri Churikov, Evan P. Hass, Shaohua Shi, Laramie D. Lemon, Pierre Luciano, Alison A. Bertuch, David C. Zappulla, Vincent Géli, Jian Wu, Ming Lei

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Telomerase maintains chromosome ends from humans to yeasts. Recruitment of yeast telomerase to telomeres occurs through its Ku and Est1 subunits via independent interactions with telomerase RNA (TLC1) and telomeric proteins Sir4 and Cdc13, respectively. However, the structures of the molecules comprising these telomerase-recruiting pathways remain unknown. Here, we report crystal structures of the Ku heterodimer and Est1 complexed with their key binding partners. Two major findings are as follows: (1) Ku specifically binds to telomerase RNA in a distinct, yet related, manner to how it binds DNA; and (2) Est1 employs two separate pockets to bind distinct motifs of Cdc13. The N-terminal Cdc13-binding site of Est1 cooperates with the TLC1-Ku-Sir4 pathway for telomerase recruitment, whereas the C-terminal interface is dispensable for binding Est1 in vitro yet is nevertheless essential for telomere maintenance in vivo. Overall, our results integrate previous models and provide fundamentally valuable structural information regarding telomere biology. An integrative approach reveals how telomeric proteins coordinate to recruit telomerase to chromosome end in yeast.

Original languageEnglish (US)
Pages (from-to)331-343.e13
JournalCell
Volume172
Issue number1-2
DOIs
StatePublished - Jan 11 2018

Keywords

  • Cdc13
  • Est1
  • Est2
  • Ku
  • RNA
  • Sir4
  • TLC1
  • telomerase
  • telomere

ASJC Scopus subject areas

  • General Biochemistry, Genetics and Molecular Biology

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