Academic Thesis

Basic information

Name Ikeda Shiyogo
Belonging department
Occupation name
researchmap researcher code 1000113908
researchmap agency Okayama University of Science

Title

The role of Schizosaccharomyces pombe DNA repair enzymes Apn1p and Uve1p in the base excision repair of apurinic/apyrimidinic sites

Bibliography Type

Author

Tanihigashi, H.,  Yamada, A., Igawa, E. and Ikeda, S.

Summary

DNA repair; Base excision repair; Schizosaccharomyces pombe; AP sites; AP endonuclease; apn1; apn2; uve1; nth1
In Schizosaccharomyces pombe the repair of apurinic/apyrimidinic (AP) sites is mainly initiated by AP lyase activity of DNA glycosylase Nth1p. In contrast, the major AP endonuclease Apn2p functions by removing 3′-α,β-unsaturated aldehyde ends induced by Nth1p, rather than by incising the AP sites. S. pombe possesses other minor AP endonuclease activities derived from Apn1p and Uve1p. In this study, we investigated the function of these two enzymes in base excision repair (BER) for methyl methanesulfonate (MMS) damage using the nth1 and apn2 mutants. Deletion of apn1 or uve1 from nth1Δ cells did not affect sensitivity to MMS. Exogenous expression of Apn1p failed to suppress the MMS sensitivity of nth1Δ cells. Although Apn1p and Uve1p incised the oligonucleotide containing an AP site analogue, these enzymes could not initiate repair of the AP sites in vivo. Despite this, expression of Apn1p partially restored the MMS sensitivity of apn2Δ cells, indicating that the enzyme functions as a 3′-phosphodiesterase to remove 3′-blocked ends. Localization of Apn1p in the nucleus and cytoplasm hints at an additional function of the enzyme other than nuclear DNA repair. Heterologous expression of Saccharomyces cerevisiae homologue of Apn1p completely restored the MMS resistance of the nth1Δ and apn2Δ cells. This result confirms a difference in the major pathway for processing the AP site between S. pombe and S. cerevisiae cells.


Magazine(name)

Biochemical and Biophysical Research Communications

Publisher

Volume

347

Number Of Pages

4

StartingPage

889

EndingPage

894

Date of Issue

2006/09

Referee

Exist

Invited

Language

English

Thesis Type

Research papers (academic journals)

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DOI

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PMID

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arXiv ID

ORCID Put Code

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