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PMID: 9731507 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Mutation rate of a microsatellite sequence in normal human fibroblasts.

Cancer research ·Vol. 58 ·No. 17 ·1998-09-01 ·Pages 3946-9

Boyer JC, Farber RA

Abstract

Dinucleotide repeats, because of their repetitive nature, are prone to frameshift mutations, most likely via a DNA-polymerase slippage mechanism. Mutation rates in microsatellite DNA sequences are high in mismatch repair-defective cells. In normal cells, only estimates of maximal rates of mutation in microsatellites have been possible previously, because of the low sensitivity of screening assays for mutations in endogenous sequences. We have measured the spontaneous mutation rate of a dinucleotide repeat in diploid human foreskin fibroblasts. In our system, the mutation target is a (CA)17 repeat contained within a stably integrated plasmid. The repeat disrupts the reading frame of a neomycin (neo) resistance gene within the plasmid. Cells containing frameshift mutations in the CA repeat that correct the reading frame of the neo gene are selected using the neo analogue G418. This system of measuring microsatellite mutation rates is highly sensitive, because there is a specific target within which mutations can be selected. Fluctuation analysis of cells containing the target DNA yielded mutation rates of <3.1 x 10(-8) to 44.8 x 10(-8) mutations/cell/generation. This is the first report of a direct measurement of a spontaneous mutation rate of a microsatellite sequence in normal human cells.

MeSH Terms
Cells, Cultured Dinucleotide Repeats Fibroblasts Humans Microsatellite Repeats Mutation
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Boyer J C
Department of Pathology and Laboratory Medicine, University of North Carolina at Chapel Hill, 27599, USA.
Farber R A
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
0008-5472
Published
1998-09-01
Pages
3946-9
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
Grants
NCI NIH HHS · CA63264 · United States
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