A novel circular RNA, hsa_circ_0030998 suppresses lung cancer tumorigenesis and Taxol resistance by sponging miR‐558

Circular RNAs (circRNAs) are single‐stranded RNAs which form a covalently closed continuous loop. Although originally shown to be non‐protein‐coding, some circRNAs can give rise to micropeptides. circRNAs have also been shown to play essential regulatory roles in a variety of developmental and disea...

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Main Authors: Xiaoping Li, Yiling Feng, Bo Yang, Ting Xiao, Haixia Ren, Xi Yu, Lei Li, Mingjiang Li, Weidong Zhang
Format: Article
Language:English
Published: Wiley 2021-08-01
Series:Molecular Oncology
Subjects:
Online Access:https://doi.org/10.1002/1878-0261.12852
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spelling doaj-4bc7a93683d34b24ad096f00c75570612021-08-04T05:07:21ZengWileyMolecular Oncology1574-78911878-02612021-08-011582235224810.1002/1878-0261.12852A novel circular RNA, hsa_circ_0030998 suppresses lung cancer tumorigenesis and Taxol resistance by sponging miR‐558Xiaoping Li0Yiling Feng1Bo Yang2Ting Xiao3Haixia Ren4Xi Yu5Lei Li6Mingjiang Li7Weidong Zhang8Department of Thoracic Surgery Tianjin First Central Hospital ChinaDepartment of Oncology Armed Police Characteristic Medical Center Tianjin ChinaDepartment of Thoracic Surgery Tianjin First Central Hospital ChinaCollege of Pharmacy State Key Laboratory of Medicinal Chemical Biology Nankai University Tianjin ChinaDepartment of Pharmacy Tianjin First Central Hospital ChinaDepartment of Respiratory Tianjin First Central Hospital ChinaDepartment of Thoracic Surgery Tianjin First Central Hospital ChinaDepartment of Thoracic Surgery Tianjin First Central Hospital ChinaDepartment of Thoracic Surgery Tianjin First Central Hospital ChinaCircular RNAs (circRNAs) are single‐stranded RNAs which form a covalently closed continuous loop. Although originally shown to be non‐protein‐coding, some circRNAs can give rise to micropeptides. circRNAs have also been shown to play essential regulatory roles in a variety of developmental and disease processes. In a previous study, hsa_circ_0030998 was identified as a circRNA downregulated in lung cancer, but its potential implications and mechanisms in lung cancer were not addressed. Here, we showed that overexpressing circ_0030998 decreased proliferation, migration, and invasion of lung cancer cells, while also dampening resistance to Taxol, a classical antitumor drug. Depleting circ_0030998 reversed these phenotypic effects. A high circ_0030998 expression was correlated with a high survival rate in lung cancer patients. Additionally, we found circ_0030998 could downregulate miR‐558 expression, serving as a microRNA sponge. In conclusion, our data support that hsa_circ_0030998 can slow down the progression of lung cancer by targeting miR‐558 and suppress malignant phenotypes such as proliferation, migration, and invasion progression of lung cancer cells. Therefore, we highlight that circ_0030998 could be a novel tumor suppressor of lung cancer.https://doi.org/10.1002/1878-0261.12852hsa_circ_0030998lung cancermiR‐558MMP1MMP17Taxol resistance
collection DOAJ
language English
format Article
sources DOAJ
author Xiaoping Li
Yiling Feng
Bo Yang
Ting Xiao
Haixia Ren
Xi Yu
Lei Li
Mingjiang Li
Weidong Zhang
spellingShingle Xiaoping Li
Yiling Feng
Bo Yang
Ting Xiao
Haixia Ren
Xi Yu
Lei Li
Mingjiang Li
Weidong Zhang
A novel circular RNA, hsa_circ_0030998 suppresses lung cancer tumorigenesis and Taxol resistance by sponging miR‐558
Molecular Oncology
hsa_circ_0030998
lung cancer
miR‐558
MMP1
MMP17
Taxol resistance
author_facet Xiaoping Li
Yiling Feng
Bo Yang
Ting Xiao
Haixia Ren
Xi Yu
Lei Li
Mingjiang Li
Weidong Zhang
author_sort Xiaoping Li
title A novel circular RNA, hsa_circ_0030998 suppresses lung cancer tumorigenesis and Taxol resistance by sponging miR‐558
title_short A novel circular RNA, hsa_circ_0030998 suppresses lung cancer tumorigenesis and Taxol resistance by sponging miR‐558
title_full A novel circular RNA, hsa_circ_0030998 suppresses lung cancer tumorigenesis and Taxol resistance by sponging miR‐558
title_fullStr A novel circular RNA, hsa_circ_0030998 suppresses lung cancer tumorigenesis and Taxol resistance by sponging miR‐558
title_full_unstemmed A novel circular RNA, hsa_circ_0030998 suppresses lung cancer tumorigenesis and Taxol resistance by sponging miR‐558
title_sort novel circular rna, hsa_circ_0030998 suppresses lung cancer tumorigenesis and taxol resistance by sponging mir‐558
publisher Wiley
series Molecular Oncology
issn 1574-7891
1878-0261
publishDate 2021-08-01
description Circular RNAs (circRNAs) are single‐stranded RNAs which form a covalently closed continuous loop. Although originally shown to be non‐protein‐coding, some circRNAs can give rise to micropeptides. circRNAs have also been shown to play essential regulatory roles in a variety of developmental and disease processes. In a previous study, hsa_circ_0030998 was identified as a circRNA downregulated in lung cancer, but its potential implications and mechanisms in lung cancer were not addressed. Here, we showed that overexpressing circ_0030998 decreased proliferation, migration, and invasion of lung cancer cells, while also dampening resistance to Taxol, a classical antitumor drug. Depleting circ_0030998 reversed these phenotypic effects. A high circ_0030998 expression was correlated with a high survival rate in lung cancer patients. Additionally, we found circ_0030998 could downregulate miR‐558 expression, serving as a microRNA sponge. In conclusion, our data support that hsa_circ_0030998 can slow down the progression of lung cancer by targeting miR‐558 and suppress malignant phenotypes such as proliferation, migration, and invasion progression of lung cancer cells. Therefore, we highlight that circ_0030998 could be a novel tumor suppressor of lung cancer.
topic hsa_circ_0030998
lung cancer
miR‐558
MMP1
MMP17
Taxol resistance
url https://doi.org/10.1002/1878-0261.12852
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