miR-181a-2* expression is different amongst carcinomas from the colorectal serrated route

Author:

Kondelova Alexandra12,Alburquerque-González Begoña3,Vychytilova-Faltejskova Petra2,García-Solano José134,Prochazka Vladimir5,Kala Zdenek5,Pérez Fernando6,Slaby Ondrej27,Conesa-Zamora Pablo348ORCID

Affiliation:

1. Pathology Department, Santa Lucia University Hospital, Cartagena, Spain

2. Central European Institute of Technology, Masaryk University, Brno, Czech Republic

3. Department of Histology and Pathology, Faculty of Life Sciences, Catholic University of Murcia, Avda. Los Jerónimos, Murcia, Spain

4. Research Group on Molecular Pathology and Pharmacogenetics, Institute for Bio-health Research of Murcia, Santa Lucia University Hospital, C/ Mezquita sn 30202 Cartagena, Spain

5. Department of Surgery, University Hospital Brno, Brno-Bohunice-Brno-Starý Lískovec, Czech Republic

6. Biomedical Informatics and Bioinformatics Platform, Institute for Bio-health Research of Murcia/Foundation for Healthcare Training and Research of the Region of Murcia, Calle Luis Fontes Pagán 9, Murcia, Spain

7. Department of Pathology, University Hospital Brno, Jihlavská 340/20, Brno-Bohunice-Brno-Starý Lískovec, Czech Republic

8. Clinical Analysis Department, Santa Lucia University Hospital, Cartagena, Spain

Abstract

Abstract Serrated adenocarcinoma (SAC) and colorectal carcinomas showing histological and molecular features of high-level of microsatellite instability (hmMSI-H) are both end points of the serrated pathway of colorectal carcinogenesis. Despite common features (right-sided location, CpG island methylation phenotype and BRAF mutation) there are no studies comparing the microRNA (miRNA) expression profiles in SACs and hmMSI-H. The microtranscriptome from 12 SACs and 8 hmMSI-H were analysed using Affymetrix GeneChip miRNA 3.0 arrays and differentially enriched functions involving immune response were observed from this comparison. miR-181a-2* was found significantly more expressed in hmMSI-H than in SAC and higher expression of this miRNA in microsatellite unstable colorectal cancer were corroborated by Real-Time PCR in an extended series (61 SAC, 21 hmMSI-H). An analysis of genes possibly regulated by miR-181a-2* was carried out and, amongst these, an inverse correlation of NAMPT with miR-181a-2* expression was observed, whereas, for TRAF1 and SALL1, additional regulation mechanisms involving CpG island methylation were observed. miR-181a-2* is associated with particular histological and molecular features of colorectal carcinomas within the serrated pathological pathway and might play a role in the immune responses of microsatellite instability carcinomas.

Funder

Ministry of Health of the Czech Republic

Carlos III Health Institute

Spanish Ministry of Health

Publisher

Oxford University Press (OUP)

Subject

Health, Toxicology and Mutagenesis,Genetics (clinical),Toxicology,Genetics

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