| Literature DB >> 21106063 |
Eva Falck1, Sandra Karlsson1, Jessica Carlsson1, Gisela Helenius2, Mats Karlsson2, Karin Klinga-Levan1.
Abstract
Glutathione peroxidase 3 (GPX3) is one of the key enzymes in the cellular defense against oxidative stress and the hepatocyte growth factor receptor, (MET) has been suggested to be influenced by the GPX3 gene expression. In a previous microarray study performed by our group, Gpx3 was identified as a potential biomarker for rat endometrial adenocarcinoma (EAC), since the expression was highly downregulated in rat EAC tumors. Herein, we have investigated the mRNA expression and Gpx3 and Met in rat EAC by real time quantitative PCR (qPCR), and the methylation status of Gpx3. In addition we have examined the expression of GPX3 and MET in 30 human EACs of different FIGO grades and 20 benign endometrial tissues. We found that the expression of GPX3 was uniformly down regulated in both rat and human EAC, regardless of tumor grade or histopathological subtype, implying that the down-regulation is an early event in EAC. The rate of Gpx3 promoter methylation reaches 91%, where biallelic methylation was present in 90% of the methylated tumors. The expression of the Met oncogene was slightly upregulated in EACs that showed loss of expression of Gpx3, but no tumor suppressor activity of Gpx3/GPX3 was detected. Preliminary results also suggest that the production of H2O2 is higher in rat endometrial tumors with down-regulated Gpx3 expression. A likely consequence of loss of GPX3 protein function would be a higher amount of ROS in the cancer cell environment. Thus, the results suggest important clinical implications of the GPX3 expression in EAC, both as a molecular biomarker for EAC and as a potential target for therapeutic interventions.Entities:
Year: 2010 PMID: 21106063 PMCID: PMC3014921 DOI: 10.1186/1475-2867-10-46
Source DB: PubMed Journal: Cancer Cell Int ISSN: 1475-2867 Impact factor: 5.722
Figure 1Gene expression of of Gpx3/GPX3 and Met/MET in rat and human. (a) Gpx3 expression in rat endometrial adenocarcinoma and pre-malignant endometrial cell lines. (b) GPX3 gene expression in human endometrial adenocarcinomas of benign samples and FIGO grade I-III tumor samples. (c) Gene expression of Met in rat endometrial adenocarcinoma and pre-malignant endometrial cell lines. (d) MET gene expression in human endometrial adenocarcinomas of benign samples and FIGO grade I-III tumor samples. The median in each group is represented by a horizontal line that indicates the mean delta delta Ct value in each group.
Overview of the rat material and the tests performed in the study.
| Sample | Cell type | Q-PCR | Q-PCR | Methylation | Demethylation | H2O2 | FISH |
|---|---|---|---|---|---|---|---|
| NUT43 | NME | X | X | X | X | ||
| NUT56 | NME | X | X | X | X | ||
| NUT6 | EAC | X | X | X | |||
| NUT12 | EAC | X | X | X | X | X | |
| NUT31 | EAC | X | X | X | |||
| NUT39 | EAC | X | X | X | |||
| NUT46 | EAC | X | X | X | |||
| NUT50 | EAC | X | X | X | |||
| NUT51 | EAC | X | X | X | |||
| NUT52 | EAC | X | X | X | |||
| NUT81 | EAC | X | X | X | X | ||
| NUT84 | EAC | X | X | X | X | ||
| NUT127 | EAC | X | X | X | |||
| RUT5 | EAC | X | |||||
| RUT12 | EAC | X | X | X | |||
| RUT13 | EAC | X | X | X | |||
| RUT30 | EAC | X | X | X |
Overview of the human material and the tests performed in the study
| Sample | Tumor grade | qPCR | qPCR |
|---|---|---|---|
| Lung | normal | X | X |
| 1-20 | benign | X | X |
| 21-30 | I | X | X |
| 31-40 | II | X | X |
| 41-50 | III | X | X |
Methylation specific primer (MSP) pairs.
| Primer pairs | Forward primer | Reverse primer | Fragment size |
|---|---|---|---|
| Methylated | GTTGTTATTGGTTAGGAAGTTTTCG | GCGTCTTAAAATAACCACCGTC | 114 |
| Unmethylated | TTGTTATTGGTTAGGAAGTTTTTGG | AACACATCTTAAAATAACCACCATC | 116 |
| GGAAATCGTGCGTGACATTA | AGGAAGGAAGGCTGGAAGAG | 183 |
Methylation specific primer (MSP) pairs for Gpx3 used in the methylation specific PCR. The gene Actb was used as control.
Methylation status of the Gpx3 promotor region in the rat EAC cell lines.
| Methylation status | |||
|---|---|---|---|
| BDII | Strain DNA | M+/M+ | |
| NUT43 | NME | M-/M- | |
| NUT56 | NME | -------- | -------- |
| NUT6 | EAC | M+/M+ | |
| NUT12 | EAC | M+/M+ | |
| NUT31 | EAC | M+/M+ | |
| NUT39 | EAC | M+/M- | |
| NUT46 | EAC | M+/M+ | |
| NUT50 | EAC | M+/M+ | |
| NUT51 | EAC | M+/M+ | |
| NUT52 | EAC | M+/M+ | |
| NUT81 | EAC | M+/M+ | |
| NUT84 | EAC | M-/M- | |
| NUT127 | EAC | M+/M+ | |
| RUT5 | EAC | M+/M+ | |
| RUT12 | EAC | M+/M+ | |
| RUT13 | EAC | M+/M+ | |
| RUT30 | EAC | M+/M+ | |
* M+/M+ diallelic methylation, M+/M- monoallelic methylation,
M-/M- unmethylated, ------ no results available
Figure 2Demethylation of endometrial tumor cell lines (NUT12 and NUT81) induced activation of . The cells were treated with the demethylating agent 5-aza-2´-deoxycytidine (5Aza-dC) in combination with trichostatin A (TSA), a specific inhibitor of histone deacetylase.
Figure 3Measurements of hydrogen peroxide produced in one endometrial tumor with loss of expression of .
Primers used for the construction of the Gpx 3 specific probe.
| Primer | Sequence | Product size | |
|---|---|---|---|
| Exon 1 | F | TTCTCCCCAAAACCACTGAG | |
| R | CCCTTCTCTCCCTCCTAAGC | 583 | |
| Exon 2 | F | GTGGTCCCATGATGCTCTCT | |
| R | GGGTTCAAGATTTGGGTGTG | 592 | |
| Exon 3 | F | CTGTAGCAGCCATCCAACTG | |
| R | ACCTTGTTCTGTCCGTCACC | 588 | |
| Exon 4 | F | GAAGAGACAGGCTGGGTGAT | |
| R | CCCAAAGAGACCACCATCTC | 589 | |
| Exon 5 | F | TCCATGTCAGCCACTCACTC | |
| R | GAAGTTGTAGGCCCTGAGA | 594 | |
| Exon 6 | F | TAAGACTGATGCCCCCTCAC | |
| R | AGGTTTGAGCAGGACCATTG | 587 |