Instabilotyping reveals unique mutational spectra in microsatellite-unstable gastric cancers

Microsatellite instability (MSI) within coding regions causes frameshift mutations (FSMs). This type of mutation may inactivate tumor suppressor genes in cancers with frequent MSI (MSI-H cancers). To identify novel FSMs in gastric carcinogenesis in an unbiased and comprehensive manner, we screened f...

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Veröffentlicht in:Cancer research (Chicago, Ill.) Ill.), 2002-07, Vol.62 (13), p.3641-3645
Hauptverfasser: MORI, Yuriko, SATO, Fumiaki, JING YIN, ZOU, Tong-Tong, LEGGETT, Barbara, YOUNG, Joanne, NUKIWA, Toshihiro, STINE, O. Colin, ABRAHAM, John M, SHIBATA, David, MELTZER, Stephen J, SELARU, Florin M, OLARU, Andreea, PERRY, Kellie, KIMOS, Martha C, TAMURA, Gen, MATSUBARA, Nagahide, WANG, Suna, YAN XU
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Sprache:eng
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Zusammenfassung:Microsatellite instability (MSI) within coding regions causes frameshift mutations (FSMs). This type of mutation may inactivate tumor suppressor genes in cancers with frequent MSI (MSI-H cancers). To identify novel FSMs in gastric carcinogenesis in an unbiased and comprehensive manner, we screened for this type of mutation at 154 coding region repeat loci in 18 MSI-H gastric cancers. We also compared FSM rates and spectra in MSI-H gastric versus colorectal cancers. Thirteen novel loci showed FSMs in >20% of gastric tumors. Novel loci with the highest mutation frequencies included the activin type 2 receptor gene (44.4%), DKFZp564K112 (a homologue of the Drosophila tumor suppressor gene multi-sex-combs; 41.2%), and an endoplasmic reticulum chaperone protein gene SEC63 (37.5%). The mutational spectra for genes with high mutation frequencies were also significantly different between MSI-H gastric and colorectal cancers.
ISSN:0008-5472
1538-7445