Hsa-miR223-3p circulating level is upregulated in Friedreich’s ataxia and inversely associated with HCLS1 associated protein X-1, HAX-1

Author:

Quatrana Andrea1,Morini Elena2,Tiano Francesca13,Vancheri Chiara2,Panarello Luca1,Romano Silvia4,Marcotulli Christian5,Casali Carlo6,Mariotti Caterina7,Mongelli Alessia7,Fichera Mario7,Rufini Alessandra189,Condò Ivano1ORCID,Novelli Giuseppe210,Testi Roberto18,Amati Francesca211ORCID,Malisan Florence1ORCID

Affiliation:

1. Department of Biomedicine and Prevention , Laboratory of Signal Transduction, University of Rome Tor Vergata, Rome 00133 , Italy

2. Department of Biomedicine and Prevention , Section of Medical Genetics, University of Rome Tor Vergata, Rome 00133 , Italy

3. Unit of Oncogenomics and Epigenetics , IRCCS Regina Elena National Cancer Institute, Rome 00144, Italy

4. Neurosciences , Mental Health and Sensory Organs (NESMOS) Department, Faculty of Medicine and Psychology, Sapienza University, Rome 00189 , Italy

5. UOC Neurology , Provincial General Hospital of Macerata, Macerata 62100 , Italy

6. Department of Medical Surgical Sciences and Biotechnologies , Polo Pontino-Sapienza University of Rome, Latina 04100 , Italy

7. Unit of Medical Genetics and Neurogenetics , Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan 20133 , Italy

8. Fratagene Therapeutics Srl , Rome 00144 , Italy

9. Saint Camillus International University of Health and Medical Sciences , Rome 00131, Italy

10. Neuromed Institute , IRCCS, Pozzilli 86077, Italy

11. Department for the Promotion of Human Science and Quality of Life , University San Raffaele, Rome 00166 , Italy

Abstract

Abstract Frataxin (FXN) deficiency is responsible for Friedreich’s ataxia (FRDA) in which, besides the characteristic features of spinocerebellar ataxia, two thirds of patients develop hypertrophic cardiomyopathy that often progresses to heart failure and premature death. Different mechanisms might underlie FRDA pathogenesis. Among them, the role of miRNAs deserves investigations. We carried out an miRNA PCR-array analysis of plasma samples of early-, intermediate- and late-onset FRDA groups, defining a set of 30 differentially expressed miRNAs. Hsa-miR223-3p is the only miRNA shared between the three patient groups and appears upregulated in all of them. The up-regulation of hsa-miR223-3p was further validated in all enrolled patients (n = 37, Fc = +2.3; P < 0.0001). Using a receiver operating characteristic curve analysis, we quantified the predictive value of circulating hsa-miR223-3p for FRDA, obtaining an area under the ROC curve value of 0.835 (P < 0.0001) for all patients. Interestingly, we found a significant positive correlation between hsa-miR223-3p expression and cardiac parameters in typical FRDA patients (onset < 25 years). Moreover, a significant negative correlation between hsa-miR223-3p expression and HAX-1 (HCLS1-associated protein X-1) at mRNA and protein level was observed in all FRDA patients. In silico analyses suggested HAX-1 as a target gene of hsa-miR223-3p. Accordingly, we report that HAX-1 is negatively regulated by hsa-miR223-3p in cardiomyocytes (AC16) and neurons (SH-SY5Y), which are critically affected cell types in FRDA. This study describes for the first time the association between hsa-miR223-3p and HAX-1 expression in FRDA, thus supporting a potential role of this microRNA as non-invasive epigenetic biomarker for FRDA.

Funder

National Ataxia Foundation

Ministry of Health

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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