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Homozygous Deletions at 3p22, 5p14, 6q15, and 9p21 Result in Aberrant Expression of Tumor Suppressor Genes in Gastric Cancer

Authors
Lee, BonaYoon, KwiyeomLee, SunghoonKang, Jin MukKim, JunilShim, Sung HanKim, Hak-MinSong, SanghoonNaka, KazuhitoKim, An KeunYang, Han-KwangKim, Seong-Jin
Issue Date
Mar-2015
Publisher
WILEY
Citation
GENES CHROMOSOMES & CANCER, v.54, no.3, pp 142 - 155
Pages
14
Journal Title
GENES CHROMOSOMES & CANCER
Volume
54
Number
3
Start Page
142
End Page
155
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/10654
DOI
10.1002/gcc.22226
ISSN
1045-2257
1098-2264
Abstract
Homozygous deletion is a frequent mutational mechanism of silencing tumor suppressor genes in cancer. Therefore, homozygous deletions have been analyzed for identification of tumor suppressor genes that can be utilized as biomarkers or therapeutic targets for cancer treatment. In this study, to elucidate potential tumor suppressor genes involved in gastric cancer (GC), we analyzed the entire set of large homozygous deletions in six human GC cell lines through genome- and transcriptome-wide approaches. We identified 51 genes in homozygous deletion regions of chromosomes and confirmed the deletion frequency in tumor tissues of 219 GC patients from The Cancer Genome Atlas database. We evaluated the effect of homozygous deletions on the mRNA level and found significantly affected genes in chromosome bands 9p21, 3p22, 5p14, and 6q15. Among the genes in 9p21, we investigated the potential tumor suppressive effect of KLHL9. We demonstrated that ectopic expression of KLHL9 inhibited cell proliferation and tumor formation in KLHL9-deficient SNU-16 cell line. In addition, we observed that homozygous focal deletions generated truncated transcripts of TGFBR2, CTNNA1, and STXBP5. Ectopic expression of two kinds of TGFBR2-reverse GADL1 fusion genes suppressed TGF- signaling, which may lead to the loss of sensitivity to TGF- tumor suppressive activity. In conclusion, our findings suggest that novel tumor suppressor genes that are aberrantly expressed through homozygous deletions may play important roles in gastric tumorigenesis. (c) 2014 Wiley Periodicals, Inc.
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