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The REC1 Gene of Ustilago maydis, Which Encodes a 3′ → 5′ Exonuclease, Couples DNA Repair and Completion of DNA Synthesis to a Mitotic Checkpoint

  • Kenan Onel
  • , Andrew Koff
  • , Richard L. Bennett
  • , Paul Unrau
  • , William K. Holloman

Research output: Contribution to journalArticlepeer-review

27 Scopus citations

Abstract

Mutation in the REC1 gene of Ustilago maydis results in extreme sensitivity to killing by ultraviolet light. The lethality of the rec1-1 mutant was found to be partially suppressed if irradiated cells were held artificially in G2-phase by addition of a microtubule inhibitor. This mutant was also found to be sensitive to killing when DNA synthesis was inhibited by external means through addition of hydroxyurea or by genetic control in a temperature-sensitive mutant strain defective in DNA synthesis. Flow cytometric analysis of exponentially growing cultures indicated that wild-type cells accumulated in G2 after UV irradiation, while rec1-1 cells appeared to exit from G2 and accumulate in G1/S. Analysis of mRNA levels in synchronized cells indicated that the REC1 gene is periodically expressed with the cell cycle and reaches maximal levels at G1/S. The results are interpreted to mean that a G2-M checkpoint is disabled in the rec1-1 mutant. It is proposed that the REC1 gene product functions in a surveillance system operating during S-phase and G2 to find and repair stretches of DNA with compromised integrity and to communicate with the cell cycle apparatus.

Original languageEnglish
Pages (from-to)165-174
Number of pages10
JournalGenetics
Volume143
Issue number1
DOIs
StatePublished - May 1996
Externally publishedYes

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