Circular RNA ITCH suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating CDH1 via sponging miR-106a

Abstract Background Accumulating data suggested that circular RNAs (circRNAs) played important roles in the development of human cancer. However, the potential mechanism of circRNAs in ovarian cancer remains unclear. Methods Quantitative real-time polymerase chain reaction (qRT-PCR) was used to meas...

Full description

Bibliographic Details
Main Authors: Chunli Lin, Xiaofeng Xu, Qiumin Yang, Lu Liang, Shulin Qiao
Format: Article
Language:English
Published: BMC 2020-07-01
Series:Cancer Cell International
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12935-020-01420-7
id doaj-7fd67b62d9d84fc5b1adb6a9632ef2c7
record_format Article
spelling doaj-7fd67b62d9d84fc5b1adb6a9632ef2c72020-11-25T03:08:24ZengBMCCancer Cell International1475-28672020-07-0120111310.1186/s12935-020-01420-7Circular RNA ITCH suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating CDH1 via sponging miR-106aChunli Lin0Xiaofeng Xu1Qiumin Yang2Lu Liang3Shulin Qiao4Department of Oncology, Shangqiu First People’s HospitalDepartment of Obsterics, Zhengzhou Yihe HospitalDepartment of Oncology, Shangqiu First People’s HospitalDepartment of Oncology, Shangqiu First People’s HospitalDepartment of Oncology, Shangqiu First People’s HospitalAbstract Background Accumulating data suggested that circular RNAs (circRNAs) played important roles in the development of human cancer. However, the potential mechanism of circRNAs in ovarian cancer remains unclear. Methods Quantitative real-time polymerase chain reaction (qRT-PCR) was used to measure the levels of circRNA itchy E3 ubiquitin protein ligase (circ-ITCH), microRNA-106a (miR-106a) and E-cadherin (CDH1). Cell Counting Kit-8 (CCK-8) and Transwell assay were carried out to measure cell proliferation and invasion. Glucose consumption, lactate production, and ATP level were assessed by the glucose, lactate, and ATP assay kits, respectively. Cell apoptosis was detected by Flow cytometry. The binding sites were predicted by StarBase v.2.0 or microT-CDS and verified by dual-luciferase reporter assay and RNA immunoprecipitation (RIP) assays. CDH1 protein level was determined by western blot. The functional role of circ-ITCH was measured by xenograft tumor model in vivo. Results Circ-ITCH was down-regulated in ovarian cancer and positively correlated with 5-year overall survival of patients with ovarian cancer. RNase R digestion assay confirmed that circ-ITCH was more stable than its linear mRNA form. Moreover, circ-ITCH was mainly distributed in the cytoplasm of ovarian cancer cells. Functionally, circ-ITCH overexpression hindered proliferation, invasion, glycolysis and promoted apoptosis of ovarian cancer cells. Besides, circ-ITCH overexpression inhibited ovarian cancer cell progression by targeting miR-106a. Additionally, CDH1 was a target of miR-106a, and the protein level of CDH1 was negatively regulated by miR-106a. Similarly, CDH1 knockdown recovered the inhibition effects of miR-106a inhibitor or circ-ITCH overexpression on the progression of ovarian cancer cells. Importantly, circ-ITCH up-regulated the protein level of CDH1 by sponging miR-106a in ovarian cancer cells. Circ-ITCH overexpression suppressed the growth of ovarian cancer cells in vivo. Conclusion Circ-ITCH suppressed proliferation, invasion, glycolysis, and promoted apoptosis of ovarian cancer cells by modulating the miR-106a/CDH1 axis.http://link.springer.com/article/10.1186/s12935-020-01420-7Ovarian cancercirc-ITCHmiR-106aCDH1InvasionGlycolysis
collection DOAJ
language English
format Article
sources DOAJ
author Chunli Lin
Xiaofeng Xu
Qiumin Yang
Lu Liang
Shulin Qiao
spellingShingle Chunli Lin
Xiaofeng Xu
Qiumin Yang
Lu Liang
Shulin Qiao
Circular RNA ITCH suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating CDH1 via sponging miR-106a
Cancer Cell International
Ovarian cancer
circ-ITCH
miR-106a
CDH1
Invasion
Glycolysis
author_facet Chunli Lin
Xiaofeng Xu
Qiumin Yang
Lu Liang
Shulin Qiao
author_sort Chunli Lin
title Circular RNA ITCH suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating CDH1 via sponging miR-106a
title_short Circular RNA ITCH suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating CDH1 via sponging miR-106a
title_full Circular RNA ITCH suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating CDH1 via sponging miR-106a
title_fullStr Circular RNA ITCH suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating CDH1 via sponging miR-106a
title_full_unstemmed Circular RNA ITCH suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating CDH1 via sponging miR-106a
title_sort circular rna itch suppresses proliferation, invasion, and glycolysis of ovarian cancer cells by up-regulating cdh1 via sponging mir-106a
publisher BMC
series Cancer Cell International
issn 1475-2867
publishDate 2020-07-01
description Abstract Background Accumulating data suggested that circular RNAs (circRNAs) played important roles in the development of human cancer. However, the potential mechanism of circRNAs in ovarian cancer remains unclear. Methods Quantitative real-time polymerase chain reaction (qRT-PCR) was used to measure the levels of circRNA itchy E3 ubiquitin protein ligase (circ-ITCH), microRNA-106a (miR-106a) and E-cadherin (CDH1). Cell Counting Kit-8 (CCK-8) and Transwell assay were carried out to measure cell proliferation and invasion. Glucose consumption, lactate production, and ATP level were assessed by the glucose, lactate, and ATP assay kits, respectively. Cell apoptosis was detected by Flow cytometry. The binding sites were predicted by StarBase v.2.0 or microT-CDS and verified by dual-luciferase reporter assay and RNA immunoprecipitation (RIP) assays. CDH1 protein level was determined by western blot. The functional role of circ-ITCH was measured by xenograft tumor model in vivo. Results Circ-ITCH was down-regulated in ovarian cancer and positively correlated with 5-year overall survival of patients with ovarian cancer. RNase R digestion assay confirmed that circ-ITCH was more stable than its linear mRNA form. Moreover, circ-ITCH was mainly distributed in the cytoplasm of ovarian cancer cells. Functionally, circ-ITCH overexpression hindered proliferation, invasion, glycolysis and promoted apoptosis of ovarian cancer cells. Besides, circ-ITCH overexpression inhibited ovarian cancer cell progression by targeting miR-106a. Additionally, CDH1 was a target of miR-106a, and the protein level of CDH1 was negatively regulated by miR-106a. Similarly, CDH1 knockdown recovered the inhibition effects of miR-106a inhibitor or circ-ITCH overexpression on the progression of ovarian cancer cells. Importantly, circ-ITCH up-regulated the protein level of CDH1 by sponging miR-106a in ovarian cancer cells. Circ-ITCH overexpression suppressed the growth of ovarian cancer cells in vivo. Conclusion Circ-ITCH suppressed proliferation, invasion, glycolysis, and promoted apoptosis of ovarian cancer cells by modulating the miR-106a/CDH1 axis.
topic Ovarian cancer
circ-ITCH
miR-106a
CDH1
Invasion
Glycolysis
url http://link.springer.com/article/10.1186/s12935-020-01420-7
work_keys_str_mv AT chunlilin circularrnaitchsuppressesproliferationinvasionandglycolysisofovariancancercellsbyupregulatingcdh1viaspongingmir106a
AT xiaofengxu circularrnaitchsuppressesproliferationinvasionandglycolysisofovariancancercellsbyupregulatingcdh1viaspongingmir106a
AT qiuminyang circularrnaitchsuppressesproliferationinvasionandglycolysisofovariancancercellsbyupregulatingcdh1viaspongingmir106a
AT luliang circularrnaitchsuppressesproliferationinvasionandglycolysisofovariancancercellsbyupregulatingcdh1viaspongingmir106a
AT shulinqiao circularrnaitchsuppressesproliferationinvasionandglycolysisofovariancancercellsbyupregulatingcdh1viaspongingmir106a
_version_ 1724666685803200512