MicroRNA‐378a‐3p contributes to ovarian cancer progression through downregulating PDIA4

Abstract Objective MicroRNAs, as essential players in tumorigenesis, have been demonstrated to have a revolutionary effect on human cancer research. Ovarian cancer is the primary reason of death among gynecologic malignancies. In view of this, it is significant to identify prognostic and predictive...

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Main Authors: Yao Chanjiao, Chen Chunyan, Qiu Xiaoxin, Han Youjian
Format: Article
Language:English
Published: Wiley 2021-03-01
Series:Immunity, Inflammation and Disease
Subjects:
Online Access:https://doi.org/10.1002/iid3.350
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spelling doaj-f00d7a5dbbd04e86b9531a66a43c49f92021-02-04T13:00:56ZengWileyImmunity, Inflammation and Disease2050-45272021-03-019110811910.1002/iid3.350MicroRNA‐378a‐3p contributes to ovarian cancer progression through downregulating PDIA4Yao Chanjiao0Chen Chunyan1Qiu Xiaoxin2Han Youjian3No. 3 Department of Obstetrics and Gynecology Hunan Provincial People's Hospital Changsha ChinaNo. 3 Department of Obstetrics and Gynecology Hunan Provincial People's Hospital Changsha ChinaNo. 3 Department of Obstetrics and Gynecology Hunan Provincial People's Hospital Changsha ChinaDepartment of cardiology Hunan Provincial People's Hospital Changsha ChinaAbstract Objective MicroRNAs, as essential players in tumorigenesis, have been demonstrated to have a revolutionary effect on human cancer research. Ovarian cancer is the primary reason of death among gynecologic malignancies. In view of this, it is significant to identify prognostic and predictive markers for treatment of ovarian cancer. The aim of this study was to probe into the effects of miR‐378a‐3p and protein disulfide‐isomerase A4 (PDIA4) on the biological functions of ovarian cancer cells. Methods miR‐378a‐3p expression and PDIA4 messenger RNA expression in human ovarian cancer cells, normal human ovarian epithelial cells, and serum of both ovarian cancer patients and healthy people were detected by reverse transcription‐quantitative polymerase chain reaction, and the PDIA4 protein expression was tested by Western blot analysis. Ovarian cancer OVCAR3 and SKOV3 cells were transfected or cotransfected with miR‐378a‐3p mimic or pcDNA3.1‐PDIA4 or their negative control plasmids to explore their roles in biological functions in ovarian cancer cells. Luciferase activity and RIPA assays were implemented to validate the interaction between miR‐378a‐3p and PDIA4. Western blot analysis was utilized to detect phosphatidylinositol‐3 kinase/serine/threonine kinase (PI3K/AKT) signaling pathway‐related protein expression and their phosphate expression levels. Results miR‐378a‐3p was elevated and PDIA4 was decreased in ovarian cancer cells and serum. In addition, miR‐378a‐3p mimic induced ovarian cancer cell growth, while miR‐378a‐3p inhibitor and pcDNA3.1‐PDIA4 presented an inverse trend. pcDNA3.1‐PDIA4 partially eliminated the capabilities of miR‐378a‐3p mimic on ovarian cancer progression. Meanwhile, miR‐378a‐3p was found to negatively regulate PDIA4, and miR‐378a‐3p mimic increased the phosphorylation levels of AKT and PI3K, while pcDNA3.1‐PDIA4 exhibited an opposite tendency. Furthermore, pcDNA3.1‐PDIA4 largely eliminated the functions of miR‐378a‐3p mimic on phosphorylation levels of AKT and PI3K. Conclusion This study provides evidences that miR‐378a‐3p activates PI3K/AKT signaling pathway by modulating PDIA4 expression, thereby playing a role in promoting the growth of ovarian cancer cells. This study provides novel directions for targeted therapy of ovarian cancer.https://doi.org/10.1002/iid3.350invasionmicroRNA‐378a‐3pmigrationovarian cancerPDIA4PI3K/AKT signaling pathway
collection DOAJ
language English
format Article
sources DOAJ
author Yao Chanjiao
Chen Chunyan
Qiu Xiaoxin
Han Youjian
spellingShingle Yao Chanjiao
Chen Chunyan
Qiu Xiaoxin
Han Youjian
MicroRNA‐378a‐3p contributes to ovarian cancer progression through downregulating PDIA4
Immunity, Inflammation and Disease
invasion
microRNA‐378a‐3p
migration
ovarian cancer
PDIA4
PI3K/AKT signaling pathway
author_facet Yao Chanjiao
Chen Chunyan
Qiu Xiaoxin
Han Youjian
author_sort Yao Chanjiao
title MicroRNA‐378a‐3p contributes to ovarian cancer progression through downregulating PDIA4
title_short MicroRNA‐378a‐3p contributes to ovarian cancer progression through downregulating PDIA4
title_full MicroRNA‐378a‐3p contributes to ovarian cancer progression through downregulating PDIA4
title_fullStr MicroRNA‐378a‐3p contributes to ovarian cancer progression through downregulating PDIA4
title_full_unstemmed MicroRNA‐378a‐3p contributes to ovarian cancer progression through downregulating PDIA4
title_sort microrna‐378a‐3p contributes to ovarian cancer progression through downregulating pdia4
publisher Wiley
series Immunity, Inflammation and Disease
issn 2050-4527
publishDate 2021-03-01
description Abstract Objective MicroRNAs, as essential players in tumorigenesis, have been demonstrated to have a revolutionary effect on human cancer research. Ovarian cancer is the primary reason of death among gynecologic malignancies. In view of this, it is significant to identify prognostic and predictive markers for treatment of ovarian cancer. The aim of this study was to probe into the effects of miR‐378a‐3p and protein disulfide‐isomerase A4 (PDIA4) on the biological functions of ovarian cancer cells. Methods miR‐378a‐3p expression and PDIA4 messenger RNA expression in human ovarian cancer cells, normal human ovarian epithelial cells, and serum of both ovarian cancer patients and healthy people were detected by reverse transcription‐quantitative polymerase chain reaction, and the PDIA4 protein expression was tested by Western blot analysis. Ovarian cancer OVCAR3 and SKOV3 cells were transfected or cotransfected with miR‐378a‐3p mimic or pcDNA3.1‐PDIA4 or their negative control plasmids to explore their roles in biological functions in ovarian cancer cells. Luciferase activity and RIPA assays were implemented to validate the interaction between miR‐378a‐3p and PDIA4. Western blot analysis was utilized to detect phosphatidylinositol‐3 kinase/serine/threonine kinase (PI3K/AKT) signaling pathway‐related protein expression and their phosphate expression levels. Results miR‐378a‐3p was elevated and PDIA4 was decreased in ovarian cancer cells and serum. In addition, miR‐378a‐3p mimic induced ovarian cancer cell growth, while miR‐378a‐3p inhibitor and pcDNA3.1‐PDIA4 presented an inverse trend. pcDNA3.1‐PDIA4 partially eliminated the capabilities of miR‐378a‐3p mimic on ovarian cancer progression. Meanwhile, miR‐378a‐3p was found to negatively regulate PDIA4, and miR‐378a‐3p mimic increased the phosphorylation levels of AKT and PI3K, while pcDNA3.1‐PDIA4 exhibited an opposite tendency. Furthermore, pcDNA3.1‐PDIA4 largely eliminated the functions of miR‐378a‐3p mimic on phosphorylation levels of AKT and PI3K. Conclusion This study provides evidences that miR‐378a‐3p activates PI3K/AKT signaling pathway by modulating PDIA4 expression, thereby playing a role in promoting the growth of ovarian cancer cells. This study provides novel directions for targeted therapy of ovarian cancer.
topic invasion
microRNA‐378a‐3p
migration
ovarian cancer
PDIA4
PI3K/AKT signaling pathway
url https://doi.org/10.1002/iid3.350
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