| Literature DB >> 31403184 |
Cristina Montero-Conde1, Osvaldo Graña-Castro2, Guillermo Martín-Serrano2, Ángel M Martínez-Montes1, Eduardo Zarzuela3, Javier Muñoz3, Rafael Torres-Perez1, Guillermo Pita4, Alfonso Cordero-Barreal1, Luis J Leandro-García1, Rocío Letón1, Isabel López de Silanes5, Sonsoles Guadalix6, Andrés Pérez-Barrios7, Federico Hawkins6, Almudena Guerrero-Álvarez6, Cristina Álvarez-Escolá8, Rita M Regojo-Zapata9, Bruna Calsina1, Laura Remacha1, Juan M Roldán-Romero1, María Santos1, Javier Lanillos1, Mireia Jordá10, Garcilaso Riesco-Eizaguirre11,12,13, Carles Zafon14,15, Anna González-Neira4, Maria A Blasco5, Fátima Al-Shahrour2, Cristina Rodríguez-Antona1, Alberto Cascón1, Mercedes Robledo1,16.
Abstract
It is critical to identify biomarkers and functional networks associated with aggressive thyroid cancer to anticipate disease progression and facilitate personalized patient management. We performed miRNome sequencing of 46 thyroid tumors enriched with advanced disease patients with a median follow-up of 96 months. MiRNome profiles correlated with tumor-specific histopathological and molecular features, such as stromal cell infiltration and tumor driver mutation. Differential expression analysis revealed a consistent hsa-miR-139-5p downexpression in primary carcinomas from patients with recurrent/metastatic disease compared to disease-free patients, sustained in paired local metastases and validated in publicly available thyroid cancer series. Exogenous expression of hsa-miR-139-5p significantly reduced migration and proliferation of anaplastic thyroid cancer cells. Proteomic analysis indicated RICTOR, SMAD2/3 and HNRNPF as putative hsa-miR-139-5p targets in our cell system. Abundance of HNRNPF mRNA, encoding an alternative splicing factor involved in cryptic exon inclusion/exclusion, inversely correlated with hsa-miR-139-5p expression in human tumors. RNA sequencing analysis revealed 174 splicing events differentially regulated upon HNRNPF repression in our cell system, affecting genes involved in RTK/RAS/MAPK and PI3K/AKT/MTOR signaling cascades among others. These results point at the hsa-miR-139-5p/HNRNPF axis as a novel regulatory mechanism associated with the modulation of major thyroid cancer signaling pathways and tumor virulence.Entities:
Keywords: hsa-miR139-5p and HNRNPF; miRNome sequencing; stroma infiltration; thyroid cancer
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Year: 2019 PMID: 31403184 DOI: 10.1002/ijc.32622
Source DB: PubMed Journal: Int J Cancer ISSN: 0020-7136 Impact factor: 7.396