The occurrence of mutations of TDP-43, FUS, and C9ORF72 in amyotrophic lateral sclerosis (ALS) suggests pathogenic alterations to RNA metabolism and specifically to microRNA (miRNA) biology. Moreover, several ALS-related proteins impact stress granule dynamics affecting miRNA biogenesis and cellular miRNA levels. miRNAs are present in different biological fluids and have been proposed as potential biomarkers. Here we used next-generation sequencing to perform a comparative analysis of the expression profile of circulating miRNAs in the serum of 2 mutant superoxide dismutase 1 transgenic mice. Top hit candidates were then validated using quantitative real-time polymerase chain reaction, confirming significant changes for 6 miRNAs. In addition, one of these miRNAs was also altered in mutant TDP-43 mice. Then, we tested this set of miRNAs in the serum from sporadic ALS patients, observing a significant deregulation of hsa-miR-142-3p and hsa-miR-1249-3p. A negative correlation between the revised ALS functional rating scale and hsa-miR-142-3p levels was found. Bioinformatics analysis of the regulatory network governed by hsa-miR-142-3p identified TDP-43 and C9orf72 as possible targets, suggesting a connection with ALS pathogenesis. This study identifies miRNAs that are altered in ALS that may serve as potentials biomarkers.
es_ES
Patrocinador
dc.description.sponsorship
Millennium Institute
P09-015-F
FONDAP program
15150012
Frick Foundation
20014-15
ALS Therapy Alliance
2014-F-059
Muscular Dystrophy Association
382453
CONICYT-USA
2013-0003
Michael J Fox Foundation for Parkinson's Research-Target Validation
9277
COPEC-UC Foundation
2013.R.40
Ecos-Conicyt
C13S02
FONDECYT
1140549
1161284
Office of Naval Research-Global (ONR-G)
N62909-16-1-2003
ALSRP Therapeutic Idea Award
AL150111
2014-F-034
CONICYT
22130888
21151265
CONICYT Ring Initiative
ACT1109
CONICYT DRI USA
2013-0030