4.1 Article

circRNA_0005529 facilitates growth and metastasis of gastric cancer via regulating miR-527/Sp1 axis

期刊

BMC MOLECULAR AND CELL BIOLOGY
卷 22, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12860-020-00340-8

关键词

Gastric cancer; circ_0005529; miR-527; Sp1; Cell proliferation; Cell migration

资金

  1. Scientific Research Task of Sichuan Provincial Health Department [130493]

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The study revealed that circ_0005529 was upregulated in gastric cancer, promoting cell proliferation and migration by reducing miR-527 expression and affecting Sp1 regulation. This circ_0005529/miR-527/Sp1 axis shows potential as a novel therapeutic target for GC diagnosis and treatment, as demonstrated in mouse models.
Background Circular RNAs (circRNAs) are endogenous non-coding RNAs, which are associated with various biological processes, including microRNA (miRNA) interaction, protein binding and regulatory splicing. circRNA_0005529 (circ_0005529) is derived from vacuolar protein sorting 33 homologue B (VPS33B), and its biological role in gastric cancer (GC) has not been examined. In this study, the expression and location of circ_0005529 and microRNA-527 (miR-527) were determined by qRT-PCR and fluorescence in situ hybridization (FISH). Cell proliferation and cell migration were determined by MTT, EdU incorporation, colony formation, wound scratch and transwell assays. In addition, immunohistochemistry and western blotting were performed to determine the expressions of specificity protein 1 (Sp1), PCNA, c-myc, E-cadherin and N-cadherin. Western blotting and luciferase reporter assay were performed to study the interaction between circ_0005529 and miR-527 or miR-527 and Sp1. The functional effects of circ_0005529 on GC through regulating Sp1 were further evaluated using xenograft and metastatic mouse models in vivo. Results Our results showed that circ_0005529 was upregulated in GC tissues and cells, and had promoting effects on cell proliferation and cell migration. Mechanism analysis suggested that circ_0005529 could bind to microRNA-527 (miR-527) and reduce its expression. The interaction between miR-527 and Sp1 in GC was systematically studied. In addition, the results indicated that Sp1 upregulation could rescue the effects on cell proliferation and migration caused by circ_0005529. Moreover, the inhibitory effects of circ_0005529 downregulation on GC growth and metastasis were evaluated in mouse models. These findings suggested that the axis of circ_0005529/miR-527/Sp1 may serve as a promising treatment target for GC diagnosis and treatment. Conclusions These findings suggested that the signal axis of circ_0005529/miR-527/Sp1 may has the potential to be explored as a novel therapeutic target for GC diagnosis and treatment.

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