Dna2 on the road to Okazaki fragment processing and genome stability in eukaryotes

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dc.contributor.authorKang, Young-Hoonko
dc.contributor.authorLee, Chul-Hwanko
dc.contributor.authorSeo, Yeon-Sooko
dc.date.accessioned2013-03-09T21:05:51Z-
dc.date.available2013-03-09T21:05:51Z-
dc.date.created2012-02-06-
dc.date.created2012-02-06-
dc.date.issued2010-04-
dc.identifier.citationCRITICAL REVIEWS IN BIOCHEMISTRY AND MOLECULAR BIOLOGY, v.45, no.2, pp.71 - 96-
dc.identifier.issn1040-9238-
dc.identifier.urihttp://hdl.handle.net/10203/97459-
dc.description.abstractDNA replication is a primary mechanism for maintaining genome integrity, but it serves this purpose best by cooperating with other proteins involved in DNA repair and recombination. Unlike leading strand synthesis, lagging strand synthesis has a greater risk of faulty replication for several reasons: First, a significant part of DNA is synthesized by polymerase alpha, which lacks a proofreading function. Second, a great number of Okazaki fragments are synthesized, processed and ligated per cell division. Third, the principal mechanism of Okazaki fragment processing is via generation of flaps, which have the potential to form a variety of structures in their sequence context. Finally, many proteins for the lagging strand interact with factors involved in repair and recombination. Thus, lagging strand DNA synthesis could be the best example of a converging place of both replication and repair proteins. To achieve the risky task with extraordinary fidelity, Okazaki fragment processing may depend on multiple layers of redundant, but connected pathways. An essential Dna2 endonuclease/helicase plays a pivotal role in processing common structural intermediates that occur during diverse DNA metabolisms (e.g. lagging strand synthesis and telomere maintenance). Many roles of Dna2 suggest that the preemptive removal of long or structured flaps ultimately contributes to genome maintenance in eukaryotes. In this review, we describe the function of Dna2 in Okazaki fragment processing, and discuss its role in the maintenance of genome integrity with an emphasis on its functional interactions with other factors required for genome maintenance.</.-
dc.languageEnglish-
dc.publisherTAYLOR & FRANCIS INC-
dc.subjectREPLICATION-PROTEIN-A-
dc.subjectSIMIAN VIRUS-40 DNA-
dc.subjectCELL NUCLEAR ANTIGEN-
dc.subjectDOUBLE-STRAND BREAKS-
dc.subjectSACCHAROMYCES-CEREVISIAE DNA2-
dc.subjectHUMAN FLAP ENDONUCLEASE-1-
dc.subjectYEAST SCHIZOSACCHAROMYCES-POMBE-
dc.subjectHUMAN MUS81-EME1 ENDONUCLEASE-
dc.subjectSTRUCTURE-SPECIFIC CLEAVAGE-
dc.subjectNUCLEOTIDE EXCISION-REPAIR-
dc.titleDna2 on the road to Okazaki fragment processing and genome stability in eukaryotes-
dc.typeArticle-
dc.identifier.wosid000275655700001-
dc.identifier.scopusid2-s2.0-77949557756-
dc.type.rimsART-
dc.citation.volume45-
dc.citation.issue2-
dc.citation.beginningpage71-
dc.citation.endingpage96-
dc.citation.publicationnameCRITICAL REVIEWS IN BIOCHEMISTRY AND MOLECULAR BIOLOGY-
dc.identifier.doi10.3109/10409230903578593-
dc.contributor.localauthorSeo, Yeon-Soo-
dc.type.journalArticleReview-
dc.subject.keywordAuthorDna2-
dc.subject.keywordAuthorFen1-
dc.subject.keywordAuthorDNA replication-
dc.subject.keywordAuthorlagging strand synthesis-
dc.subject.keywordAuthorOkazaki fragment processing-
dc.subject.keywordAuthorDNA repair-
dc.subject.keywordAuthorDNA recombination-
dc.subject.keywordAuthorgenome instability-
dc.subject.keywordPlusREPLICATION-PROTEIN-A-
dc.subject.keywordPlusSIMIAN VIRUS-40 DNA-
dc.subject.keywordPlusCELL NUCLEAR ANTIGEN-
dc.subject.keywordPlusDOUBLE-STRAND BREAKS-
dc.subject.keywordPlusSACCHAROMYCES-CEREVISIAE DNA2-
dc.subject.keywordPlusHUMAN FLAP ENDONUCLEASE-1-
dc.subject.keywordPlusYEAST SCHIZOSACCHAROMYCES-POMBE-
dc.subject.keywordPlusHUMAN MUS81-EME1 ENDONUCLEASE-
dc.subject.keywordPlusSTRUCTURE-SPECIFIC CLEAVAGE-
dc.subject.keywordPlusNUCLEOTIDE EXCISION-REPAIR-
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