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<scp>CircFAT1</scp> facilitates cervical cancer malignant progression by regulating <scp>ERK1</scp>/2 and p38 <scp>MAPK</scp> pathway through <scp>miR</scp>‐409‐3p/<scp>CDK8</scp> axis

Bing Zhou, Ting Li, Rongping Xie, Jianbin Zhou, Jue Liu, Yu Luo, Xia Zhang

2021Drug Development Research28 citationsDOI

Abstract

Circular RNA FAT atypical cadherin 1 (circFAT1) has been reported to play vital roles in the progression of some cancers. However, the regulatory role and underlying mechanisms of circFAT1 in cervical cancer (CC) remain largely unknown. The expression of circFAT1, microRNA (miR)-409-3p and cyclin-dependent kinase 8 (CDK8) was detected using qRT-PCR and Western blot assays. Cell proliferation, apoptosis, migration and invasion in vitro were investigated using cell counting kit-8, colony formation, flow cytometry, and transwell assays, respectively. Western blot assay was used to determine the activation of ERK1/2 and p38 MAPK pathway. The interaction miR-409-3p and circFAT1 or CDK8 was confirmed by dual-luciferase reporter, pull-down or RIP assays. The effects of circFAT1 in vivo were determined using xenograft models. CircFAT1 was highly expressed in CC, and closely associated with poor prognosis. CircFAT1 knockdown resulted in the suppression of proliferation, migration and invasion, and promotion of apoptosis in CC cells via the inactivation of ERK1/2 and p38 MAPK pathway; also, circFAT1 silencing could inactivate this pathway and repressed CC tumor growth in vivo. Mechanistic analysis showed that circFAT1 directly sponged miR-409-3p and then relieved the repressive effect of miR-409-3p on its target CDK8. Furthermore, miR-409-3p inhibition reversed the effects of circFAT1 silencing on CC cells. Whereas, miR-409-3p overexpression impeded CC cell growth and motility, which was attenuated by CDK8. CircFAT1 promoted CC progression via activating ERK1/2 and p38 MAPK pathway through the miR-409-3p/CDK8 axis, suggesting a promising prognostic biomarker and therapeutic target for CC.

Topics & Concepts

Gene silencingMAPK/ERK pathwayp38 mitogen-activated protein kinasesmicroRNAGene knockdownCell growthCancer researchChemistryApoptosisRNA interferenceCell biologySmall hairpin RNABiologyMolecular biologyKinaseRNABiochemistryGeneCircular RNAs in diseasesMicroRNA in disease regulation