Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

RETRACTED: lncRNA ABHD11‐AS1, regulated by the EGFR pathway, contributes to the ovarian cancer tumorigenesis by epigenetically suppressing TIMP2

View through CrossRef
AbstractObjectiveEpithelial ovarian cancer (EOC) is a common gynecologic malignancy characterized by extensive peritoneal metastasis and high mortality rate. ABHD11 Antisense RNA1 (ABHD11‐AS1) has recently been identified as a regulator of growth and metastasis in multiple tumors, including EOC. However, the biological function and potential mechanism of ABHD11‐AS1 in EOC remains poorly understood.MethodsImmunohistochemistry, western blot, and qRT‐PCR analysis were used to determine the expression pattern of ABHD11‐AS1 and epidermal growth factor receptor (EGFR) in both EOC tissues and cell lines, respectively. Colony formation, transwell and wound healing assays were performed to evaluate the roles of EGFR and ABHD11‐AS1 on the capacity of cell proliferation, migration, and invasion. Western blot analysis was performed to measure the regulation of EGFR pathway on STAT3. Moreover, chromatin immunoprecipitation was employed to demonstrate the interaction between ABHD11‐AS1 and STAT3. RNA immunoprecipitation was subjected to prove the direct binding between ABHD11‐AS1 and EZH2. Immunofluorescence staining was performed to measure the expression and localization of TIMP2. EOC mouse model was conducted for validating the role of ABHD11‐AS1 in vivo.ResultsEGFR and ABHD11‐AS1 were highly expressed in EOC tissues and cell lines. Knockdown of EGFR or ABHD11‐AS1 inhibited cell growth, migration, and invasion of EOC cells. Expression of ABHD11‐AS1 was regulated by the activation of EGFR signaling pathway, mediated by STAT3. Besides, ABHD11‐AS1 was shown to silence TIMP2 by binding to chromatin‐modifying enzyme EZH2. Furthermore, inhibition of EGFR pathway or ABHD11‐AS1 repressed the tumor growth of EOC.ConclusionWe defined the regulatory relationship between the EGFR signaling pathway, ABHD11‐AS1, EZH2, and TIMP2 suggesting that ABHD11‐AS1 may act as an oncogene and a potential target for antitumor therapies in ovarian cancer.
Title: RETRACTED: lncRNA ABHD11‐AS1, regulated by the EGFR pathway, contributes to the ovarian cancer tumorigenesis by epigenetically suppressing TIMP2
Description:
AbstractObjectiveEpithelial ovarian cancer (EOC) is a common gynecologic malignancy characterized by extensive peritoneal metastasis and high mortality rate.
ABHD11 Antisense RNA1 (ABHD11‐AS1) has recently been identified as a regulator of growth and metastasis in multiple tumors, including EOC.
However, the biological function and potential mechanism of ABHD11‐AS1 in EOC remains poorly understood.
MethodsImmunohistochemistry, western blot, and qRT‐PCR analysis were used to determine the expression pattern of ABHD11‐AS1 and epidermal growth factor receptor (EGFR) in both EOC tissues and cell lines, respectively.
Colony formation, transwell and wound healing assays were performed to evaluate the roles of EGFR and ABHD11‐AS1 on the capacity of cell proliferation, migration, and invasion.
Western blot analysis was performed to measure the regulation of EGFR pathway on STAT3.
Moreover, chromatin immunoprecipitation was employed to demonstrate the interaction between ABHD11‐AS1 and STAT3.
RNA immunoprecipitation was subjected to prove the direct binding between ABHD11‐AS1 and EZH2.
Immunofluorescence staining was performed to measure the expression and localization of TIMP2.
EOC mouse model was conducted for validating the role of ABHD11‐AS1 in vivo.
ResultsEGFR and ABHD11‐AS1 were highly expressed in EOC tissues and cell lines.
Knockdown of EGFR or ABHD11‐AS1 inhibited cell growth, migration, and invasion of EOC cells.
Expression of ABHD11‐AS1 was regulated by the activation of EGFR signaling pathway, mediated by STAT3.
Besides, ABHD11‐AS1 was shown to silence TIMP2 by binding to chromatin‐modifying enzyme EZH2.
Furthermore, inhibition of EGFR pathway or ABHD11‐AS1 repressed the tumor growth of EOC.
ConclusionWe defined the regulatory relationship between the EGFR signaling pathway, ABHD11‐AS1, EZH2, and TIMP2 suggesting that ABHD11‐AS1 may act as an oncogene and a potential target for antitumor therapies in ovarian cancer.

Related Results

lncRNA ABHD11-AS1 drives gastric cancer development by targeting miR-1301-3p/PDPK1 signaling
lncRNA ABHD11-AS1 drives gastric cancer development by targeting miR-1301-3p/PDPK1 signaling
Abstract Background Long noncoding RNAs (lncRNAs) has long been reported to associate with multitudinous kinds of cancer. The ABHD11-AS1, a newly identified lncRNAs, has b...
TIMP2 is associated with prognosis and immune infiltrates of gastric and colon cancer
TIMP2 is associated with prognosis and immune infiltrates of gastric and colon cancer
Abstract Tissue inhibitor of metalloproteinase-2 (TIMP2) is an inhibitor among the tissue inhibitors of metalloproteinase (TIMP) family members, is associated with the prog...
LncRNA EPB41L4A-AS1 Regulates Cell Proliferation, Apoptosis and Metastasis in Breast Cancer
LncRNA EPB41L4A-AS1 Regulates Cell Proliferation, Apoptosis and Metastasis in Breast Cancer
Abstract Background: Breast cancer is a leading global public health problem. In our previous study, we identified that lncRNA EPB41L4A antisense RNA 1 (EPB41L4A-AS1) was s...
Diagnostic and Prognostic Potentials of Long Noncoding RNA ELF3-AS1 in Glioma Patients
Diagnostic and Prognostic Potentials of Long Noncoding RNA ELF3-AS1 in Glioma Patients
Objective. Accumulating evidence implies that long noncoding RNAs (lncRNAs) play a crucial role in predicting survival for glioma patients. However, the potential function of lncRN...
STK4 antisense RNA 1-p53 affects osteosarcoma
STK4 antisense RNA 1-p53 affects osteosarcoma
Abstract Background LncRNA STK4 antisense RNA 1(STK4-AS1) has been identified as a potential biomarker associated with multiple cancers. We proposed that STK4-AS1 plays a ...
RHPN1-AS1 Drives the Progression of Hepatocellular Carcinoma via Regulating miR-596/IGF2BP2 Axis
RHPN1-AS1 Drives the Progression of Hepatocellular Carcinoma via Regulating miR-596/IGF2BP2 Axis
Background: Hepatocellular carcinoma (HCC) is one of the most deadly cancer types worldwide, and its incidence is high in China. Multiple long non-coding RNAs (lncRNAs) have been r...

Back to Top