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Cited 19 time in webofscience Cited 20 time in scopus
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Genes co-amplified with ERBB2 or MET as novel potential cancer-promoting genes in gastric cancer

Authors
Kwon, MJ[Kwon, Mi Jeong]Kim, RN[Kim, Ryong Nam]Song, K[Song, Kyoung]Jeon, S[Jeon, Sinyoung]Jeong, HM[Jeong, Hae Min]Kim, JS[Kim, Joo Seok]Han, J[Han, Jinil]Hong, S[Hong, Sungyoul]Oh, E[Oh, Ensel]Choi, JS[Choi, Jong-Sun]An, J[An, Jungsuk]Pollack, JR[Pollack, Jonathan R.]Choi, YL[Choi, Yoon-La]Park, CK[Park, Cheol-Keun]Shin, YK[Shin, Young Kee]
Issue Date
3-Nov-2017
Publisher
IMPACT JOURNALS LLC
Keywords
gastric cancer; DNA copy number alterations; potential cancer-promoting genes; ERBB2; MET
Citation
ONCOTARGET, v.8, no.54, pp.92209 - 92226
Indexed
SCIE
SCOPUS
Journal Title
ONCOTARGET
Volume
8
Number
54
Start Page
92209
End Page
92226
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/26449
DOI
10.18632/oncotarget.21150
ISSN
1949-2553
Abstract
Gastric cancer (GC), one of the most common cancers worldwide, has a high mortality rate due to limited treatment options. Identifying novel and promising molecular targets is a major challenge that must be overcome if treatment of advanced GC is to be successful. Here, we used comparative genomic hybridization and gene expression microarrays to examine genome-wide DNA copy number alterations (CNAs) and global gene expression in 38 GC samples from old and young patients. We identified frequent CNAs, which included copy number gains on chromosomes 3q, 7p, 8q, 20p, and 20q and copy number losses on chromosomes 19p and 21p. The most frequently gained region was 7p21.1 (55%), whereas the most frequently deleted region was 21p11.1 (50%). Recurrent highly amplified regions 17q12 and 7q31.1-7q31.31 harbored two well-known oncogenes: ERBB2 and MET. Correlation analysis of CNAs and gene expression levels identified CAPZA2 (co-amplified with MET) and genes GRB7, MIEN1, PGAP3, and STARD3 (co-amplified with ERBB2) as potential candidate cancer-promoting genes (CPGs). Public dataset analysis confirmed co-amplification of these genes with MET or ERBB2 in GC tissue samples, and revealed that high expression (except for PGAP3) was significantly associated with shorter overall survival. Knockdown of these genes using small interfering RNA led to significant suppression of GC cell proliferation and migration. Reduced GC cell proliferation mediated by CAPZA2 knockdown was attributable to attenuated cell cycle progression and increased apoptosis. This study identified novel candidate CPGs co-amplified with MET or ERBB2, and suggests that they play a functional role in GC.
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