circTADA2As suppress breast cancer progression and metastasis via targeting miR-203a-3p/SOCS3 axis

Jianzhen Xu(Shantou University), Changchun Shao(Shantou University), Xiaojia Wang(Zhejiang Cancer Hospital), Xing Zhao(Shantou University), Junqing Chen(Zhejiang Cancer Hospital), Yan-Xiu Ouyang(Shantou University), Jun Feng(Shantou University), Fan Zhang(Shantou University), Wen-He Huang(Shantou University), Qian Ying(Zhejiang Cancer Hospital), Chunfa Chen(Shantou University), Xiaolong Wei(Shantou University), Hong-Yan Dong(Linyi People's Hospital), Guo‐Jun Zhang(Shantou University), Min Chen(Xiamen University)
Cell Death and Disease
February 20, 2019
Cited by 306Open Access
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Abstract

More and more evidence indicates that circular RNAs (circRNAs) have important roles in several diseases, especially in cancers. However, their involvement remains to be investigated in breast cancer. Through screening circRNA profile, we identified 235 differentially expressed circRNAs in breast cancer. Subsequently, we explored the clinical significance of two circTADA2As in a large cohort of triple-negative breast cancer (TNBC), and performed functional analysis of circTADA2A-E6 in vitro and in vivo to support clinical findings. Finally, we evaluated the effect of circTADA2A-E6 on miR-203a-3p and its target gene SOCS3. We detected two circRNAs, circTADA2A-E6 and circTADA2A-E5/E6, which were among the top five differentially expressed circRNAs in breast cancer. They were consistently and significantly decreased in a large cohort of breast cancer patients, and their downregulation was associated with poor patient survival for TNBC. Especially, circTADA2A-E6 suppressed in vitro cell proliferation, migration, invasion, and clonogenicity and possessed tumor-suppressor capability. circTADA2A-E6 preferentially acted as a miR-203a-3p sponge to restore the expression of miRNA target gene SOCS3, resulting in a less aggressive oncogenic phenotype. circTADA2As as promising prognostic biomarkers in TNBC patients, and therapeutic targeting of circTADA2As/miRNA/mRNA network may be a potential strategy for the treatment of breast cancer.


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