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Updated: Jun 10, 2026

Methyl-binding DNA capture Sequencing for Patient Tissues
Published on: October 31, 2016
Infrequent methylation of the DUSP6 phosphatase in endometrial cancer
Katherine B Chiappinelli1, B J Rimel, L Stewart Massad
1Division of Endocrine and Oncologic Surgery, Department of Surgery, Washington University School of Medicine and Siteman Cancer Center, 660 South Euclid Avenue, Box 8067, St. Louis, MO 63110, USA. chiappinellik@wudosis.wustl.edu
Objective:
Dual-specificity phosphatase six (DUSP6, MKP3, or PYST1) dephosphorylates phosphotyrosine and phosphothreonine residues on ERK-2 (MAPK1) to inactivate the ERK-2 kinase. DUSP6 is a critical regulator of the ERK signaling cascade and has been implicated as a tumor suppressor. DNA methylation in the first intron of DUSP6 abrogates expression in a subset of pancreatic cancers. We sought to determine whether DUSP6 was similarly silenced by methylation in endometrial cancer, a tumor type in which there is frequent activation of the ERK pathway.
Methods:
One hundred and nine endometrial cancers were analyzed for DUSP6 methylation using combined bisulfite restriction analysis (COBRA). The cohort included 70 primary endometrioid endometrial cancers, 21 primary endometrial tumors of adverse histological types, and 18 endometrial cancer cell lines. Primary tumors, cell lines, and normal endometrial tissues were analyzed for DUSP6 mRNA levels using quantitative RT-PCR and pERK levels by Western blots and/or immunohistochemistry.
Results:
Methylation of the first intron of the DUSP6 gene was seen in 1/91 primary endometrial cancers investigated. The methylated tumor was also methylated at the more 5' regulatory region of DUSP6. Q-RT-PCR revealed that DUSP6 transcript levels varied widely in primary endometrial tumors. DUSP6 mRNA levels did not correlate with pERK status in primary tumors, consistent with the existence of negative feedback loops activated by pERK that result in transcription of DUSP6.
Conclusion:
DUSP6 methylation is a rare event in endometrial cancer. Silencing of the DUSP6 phosphatase is unlikely to contribute to constitutive activation of the ERK kinase cascade in endometrial cancer.
Insights
Dual-specificity phosphatase six (DUSP6) methylation rarely silences gene expression in endometrial cancer. This rare event is unlikely to drive ERK pathway activation, a common feature in these tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Dual-specificity phosphatase six (DUSP6) inactivates ERK-2 kinase and acts as a tumor suppressor.
- DUSP6 is epigenetically silenced by DNA methylation in some pancreatic cancers.
- The ERK pathway is frequently activated in endometrial cancer.
Purpose of the Study:
- To investigate DUSP6 methylation as a silencing mechanism in endometrial cancer.
- To determine if DUSP6 silencing contributes to ERK pathway activation in this cancer type.
Main Methods:
- Analyzed 109 endometrial cancers (primary tumors and cell lines) for DUSP6 methylation using COBRA.
- Assessed DUSP6 mRNA levels via quantitative RT-PCR.
- Evaluated phosphorylated ERK (pERK) levels using Western blots and/or immunohistochemistry.
Main Results:
- DUSP6 methylation was detected in only 1 of 91 primary endometrial cancers.
- DUSP6 mRNA levels showed wide variation and did not correlate with pERK status.
- The single methylated tumor also showed methylation in a 5' regulatory region.
Conclusions:
- DUSP6 methylation is an infrequent event in endometrial cancer.
- Epigenetic silencing of DUSP6 is unlikely to be a major driver of ERK pathway activation in endometrial cancer.
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