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The Role of microRNAs, Long Non-coding RNAs, and Circular RNAs in Cervical Cancer

Maria Lina Tornesello, Raffaella Faraonio, Luigi Buonaguro, Clorinda Annunziata, Noemy Starita, Andrea Cerasuolo, Francesca Pezzuto, Anna Lucia Tornesello, Luigi Buonaguro

2020Frontiers in Oncology214 citationsDOIOpen Access PDF

Abstract

Prolonged infection of uterine cervix epithelium with human papillomavirus (HPV) and constitutive expression of viral oncogenes have been recognized as the main cause of the complex molecular changes leading to transformation of cervical epithelial cells. Deregulated expression of microRNAs (miRNA), long non-coding RNAs (lncRNA), and circular RNAs (circRNA) is involved in the initiation and promotion processes of cervical cancer development. Expression profiling of small RNAs in cervical neoplasia revealed up-regulated "oncogenic" miRNAs, such as miR-10a, miR-21, miR-19, and miR-146a, and down regulated "tumor suppressive" miRNAs, including miR-29a, miR-372, miR-214, and miR-218, associated with cell growth, malignant transformation, cell migration, and invasion. Also several lncRNAs, comprising among others HOTAIR, MALAT1, GAS5, and MEG3, have shown to be associated with various pathogenic processes such as tumor progression, invasion as well as therapeutic resistance and emerged as new diagnostic and prognostic biomarkers in cervical cancer. Moreover, human genes encoded circular RNAs, such as has_circ-0018289, have shown to sponge specific miRNAs and to concur to the deregulation of target genes. Viral encoded circE7 has also demonstrated to overexpress E7 oncoprotein thus contributing to cell transformation. In this review, we summarize current literature on the complex interplay between miRNAs, lncRNAs, and circRNAs and their role in cervical neoplasia.

Topics & Concepts

microRNALong non-coding RNACervical cancerBiologyCancerComputational biologyRNASmall nucleolar RNANon-coding RNABioinformaticsGeneticsCancer researchMedicineGeneCancer-related molecular mechanisms researchCircular RNAs in diseasesMicroRNA in disease regulation
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