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PMID: 10022907 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Impaired translesion synthesis in xeroderma pigmentosum variant extracts.

Molecular and cellular biology ·Vol. 19 ·No. 3 ·1999-03-00 ·Pages 2206-11

Cordonnier AM, Lehmann AR, Fuchs RP

Abstract

Xeroderma pigmentosum variant (XPV) cells are characterized by a cellular defect in the ability to synthesize intact daughter DNA strands on damaged templates. Molecular mechanisms that facilitate replication fork progression on damaged DNA in normal cells are not well defined. In this study, we used single-stranded plasmid molecules containing a single N-2-acetylaminofluorene (AAF) adduct to analyze translesion synthesis (TLS) catalyzed by extracts of either normal or XPV primary skin fibroblasts. In one of the substrates, the single AAF adduct was located at the 3' end of a run of three guanines that was previously shown to induce deletion of one G by a slippage mechanism. Primer extension reactions performed by normal cellular extracts from four different individuals produced the same distinct pattern of TLS, with over 80% of the products resulting from the elongation of a slipped intermediate and the remaining 20% resulting from a nonslipped intermediate. In contrast, with cellular extracts from five different XPV patients, the TLS reaction was strongly reduced, yielding only low amounts of TLS via the nonslipped intermediate. With our second substrate, in which the AAF adduct was located at the first G in the run, thus preventing slippage from occurring, we confirmed that normal extracts were able to perform TLS 10-fold more efficiently than XPV extracts. These data demonstrate unequivocally that the defect in XPV cells resides in translesion synthesis independently of the slippage process.

MeSH Terms
Cell Extracts DNA Damage DNA Primers DNA, Single-Stranded Genetic Complementation Test Humans Xeroderma Pigmentosum/genetics,pathology
Chemicals
Cell Extracts DNA Primers DNA, Single-Stranded
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Cordonnier A M
UPR9003 du CNRS, Cancérogenèse et Mutagenèse Moléculaire et Structurale, ESBS, 67400 Strasbourg, France.
Lehmann A R
Fuchs R P
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Article Info
Journal
Molecular and cellular biology
Abbr.
Mol Cell Biol
ISSN
0270-7306
Published
1999-03-00
Pages
2206-11
Language
English
Region
United States
NLM ID
8109087
PMCID
PMC84013
Subset
IM
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