Flanking sequence specificity determines coding microsatellite heteroduplex and mutation rates with defective DNA mismatch repair (MMR)
The activin type II receptor ( ACVR2 ) contains two identical microsatellites in exons 3 and 10, but only the exon 10 microsatellite is frameshifted in mismatch repair (MMR)-defective colonic tumors. The reason for this selectivity is not known. We hypothesized that ACVR2 frameshifts were influenced...
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Veröffentlicht in: | Oncogene 2010-04, Vol.29 (15), p.2172-2180 |
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Sprache: | eng |
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Zusammenfassung: | The
activin type II receptor
(
ACVR2
) contains two identical microsatellites in exons 3 and 10, but only the exon 10 microsatellite is frameshifted in mismatch repair (MMR)-defective colonic tumors. The reason for this selectivity is not known. We hypothesized that
ACVR2
frameshifts were influenced by DNA sequences surrounding the microsatellite. We constructed plasmids in which exons 3 or 10 of
ACVR2
were cloned +1 bp out of frame of enhanced green fluorescent protein (EGFP), allowing –1 bp frameshift to express EGFP. Plasmids were stably transfected into MMR-deficient cells, and subsequent non-fluorescent cells were sorted, cultured and harvested for mutation analysis. We swapped DNA sequences flanking the exon 3 and 10 microsatellites to test our hypothesis. Native
ACVR2
exon 3 and 10 microsatellites underwent heteroduplex formation (A
7
/T
8
) in
hMLH1
−/−
cells, but only exon 10 microsatellites fully mutated (A
7
/T
7
) in both
hMLH1
−/−
and
hMSH6
−/−
backgrounds, showing selectivity for exon 10 frameshifts and inability of exon 3 heteroduplexes to fully mutate. Substituting nucleotides flanking the exon 3 microsatellite for nucleotides flanking the exon 10 microsatellite significantly reduced heteroduplex and full mutation in
hMLH1
−/−
cells. When the exon 3 microsatellite was flanked by nucleotides normally surrounding the exon 10 microsatellite, fully mutant exon 3 frameshifts appeared. Mutation selectivity for
ACVR2
lies partly with flanking nucleotides surrounding each microsatellite. |
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ISSN: | 0950-9232 1476-5594 |
DOI: | 10.1038/onc.2009.508 |