| Literature DB >> 18219292 |
M Ohta1, K Mimori, Y Fukuyoshi, Y Kita, K Motoyama, K Yamashita, H Ishii, H Inoue, M Mori.
Abstract
We previously cloned human G protein gamma 7 (GNG7) and demonstrated that it was downregulated in gastrointestinal cancer. The significance of GNG7 expression in oesophageal cancer is unknown. TaqMan quantitative real-time PCR was performed to determine the clinical significance of GNG7 expression in 55 cases of oesophageal cancer. Furthermore, GNG7-transfected oesophageal cancer cells were analysed in laboratory studies at genomic and epigenetic levels. Twenty-seven patients with low GNG7 expression showed significantly poorer survival than did 28 patients with high expression (P<0.05). Tumours with low GNG7 expression invaded deeper than those with high GNG7 expression (P<0.05), both in vivo and in vitro. Eight tumours retained GNG7 expression, and they did not show either promoter hypermethylation or loss of heterozygosity (LOH). In 38 tumours with GNG7 suppression, 22 (57%) showed either LOH or promoter hypermethylation. In addition, GNG7 expression was significantly associated with the presence of miR328 in oesophageal cancer cell lines, which suggests that this microRNA might be a regulator of GNG7 expression. GNG7 suppression represents a new prognostic indicator in cases of oesophageal cancer. GNG7 might be suppressed by LOH and promoter hypermethylation or by microRNA.Entities:
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Year: 2008 PMID: 18219292 PMCID: PMC2361448 DOI: 10.1038/sj.bjc.6604124
Source DB: PubMed Journal: Br J Cancer ISSN: 0007-0920 Impact factor: 7.640
Figure 1Expression of GNG7 mRNA and patient survival. (A) Expression of GNG7 mRNA in tumour samples, normal tissues and cell lines. GNG7 mRNA expression was determined in oesophageal cancer tissues and corresponding normal tissues obtained from 55 Japanese patients who underwent surgery for oesophageal carcinoma. Figure also shows GNG7 expression in 15 cell lines established from oesophageal cancer tissue. Expression ratios were calculated by dividing the amplified GNG7 expression level by the expression of 18s ribosomal RNA. Tumour samples (relative expression: 0.096) expressed GNG7 at significantly lower levels than did normal samples (relative expression: 0.23) (P<0.0001). (B) Electrophoresed amplified products of GNG7 and GAPDH in tumour and the corresponding normal tissue from four representative oesophageal cancer cases. (C) Survival curves of 55 cases of oesophageal cancer in relation to GNG7 expression. Oesophageal cancer patients were divided into two groups relative to the median expression value (0.32), yielding a GNG7 high-expression group (T/N>0.32; n=27) and a GNG7 low-expression group (T/N<0.32; n=28).
Relationship between clinicopathologic variables and GNG7 expression in oesophageal cancer patients
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| 0.209 | ||
| <62 | 14 | 18 | |
| >62 | 14 | 9 | |
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| 0.476 | ||
| Male | 23 | 24 | |
| Female | 5 | 3 | |
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| 0.576 | ||
| Well | 6 | 7 | |
| Mod | 14 | 9 | |
| Poor | 4 | 7 | |
| Other | 4 | 4 | |
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| <0.05 | ||
| Within | 3 | 9 | |
| Beyond | 25 | 18 | |
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| 0.10 | ||
| Negative | 8 | 3 | |
| Positive | 20 | 24 | |
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| 0.451 | ||
| Negative | 11 | 8 | |
| Positive | 17 | 19 | |
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| 0.134 | ||
| Negative | 16 | 10 | |
| Positive | 12 | 17 | |
GNG7=G protein gamma 7.
Well=well-differentiated squamous cell carcinoma; mod=moderately differentiated squamous cell carcinoma; poor=poorly differentiated squamous cell carcinoma; other four cases are mucinous adenocarcinoma.
Within and beyond the oesophageal wall.
Figure 2Biologic characteristics of GNG7-transfected oesophageal cancer cells. (A) Invasion assay for GNG7 transfectants. After incubation for 6 or 24 h, the number of cells on the lower surface of the membrane was counted in five different fields (× 200). Clone A and clone B GNG7 transfectants were compared with the parental cell line KY150 and the mock cell line. GNG7 transfectants A (average intensity=2.08) and B (average intensity=1.87) were significantly less invasive than parental cells (average intensity=2.55) and mock cells (average intensity=2.82) (Figure 3, P<0.05). (B) Reactivation of GNG7 expression by 5-AZAC treatment. Analysis of four representative oesophageal cancer cell lines. Data indicate that GNG7 expression may be regulated by methylation. (C) Increased expression of GNG7 after 5-AZAC treatment in 15 oesophageal cancer cell lines. The vertical axis indicates the calculated ratio of GNG7 expression with and without 5-AZAC treatment.
Figure 3Genetic alterations of the GNG7-coding region. (A) Two representative oesophageal cancer cases that were positive (left) or negative (right) for LOH. (B) Results of pyrosequencing analysis in a CG-rich region. Region #2 did not show any alterations by bisulphite treatment. However, region #1 showed that nucleotide C was increased in tumour tissues relative to corresponding normal tissue, and nucleotide T was decreased in tumour compared to corresponding normal tissue. This trial focused on the CG site with cancer-specific CG arrangements. (C) Classification of 42 cases of oesophageal cancer according to LOH status at GNG7 region and/or promoter hypermethylation. No genetic and/or epigenetic alterations were detected in eight cases (100%) of oesophageal cancer that lacked suppression of GNG7 (T/N<0.8) expression. In contrast, LOH and/or hypermethylation were found in 22 out of 34 cases (65%) with diminished GNG7 expression.
Relationship between the loss of GNG7 expression and the genetic and/or epigenetic alteration in its loci
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| − | + |
| − | + | |
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| T/N<0.8 | 24 | 10 | 0 | 20 | 14 |
| 0.8<T/N | 6 | 0 | 2 | 8 | 0 |
| | 0.0043 | 0.0065 | |||
GNG7=G protein gamma 7; LOH=loss of heterozygosity; T/N=expression ratio of GNG7 between tumour and the corresponding normal tissues.
Figure 4Relationship between GNG7 expression and two predicted microRNAs, miR15a and miR328. (A) miR15a tended to be associated with GNG7 expression in 10 cell lines (TE6, TE8, TE10, TE12, KYSE110, KYSE450, KYSE700, KSE1 and KSE2) (r=0.617, P=0.058). (B) There was a significant association between miR328 and GNG7 expression in TE6, TE8, TE10, TE12, TE15, KYSE110, KYSE140, KYSE180, KYSE220, KYSE270, KYSE450, KYSE500, KYSE700, KSE1 and KSE2. (C) Expression of miR328 and miR15a was highly correlated (r=0.96, P<0.001).