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Authors Li Q, Qian Z, Wang L
Received 28 October 2015
Accepted for publication 13 January 2016
Published 4 May 2017 Volume 2017:12 Pages 1351—1361
DOI https://doi.org/10.2147/COPD.S99318
Checked for plagiarism Yes
Review by Single-blind
Peer reviewers approved by Dr Colin Mak
Peer reviewer comments 2
Editor who approved publication: Dr Richard Russell
Abstract: MicroRNA-124 (miR-124) has been reported to be downregulated in the
cells exposed to hypoxia, which was confirmed in our study. We then used online
microRNA target prediction tools to identify GRB2, SMAD5, and JAG1 as the
candidate target genes of miR-124, and we next validated GRB2 as a direct gene
by using luciferase reporter system. We also established the regulatory
relationship between miR-124 and GRB2 by showing the negative linear
relationship between GRB2 and miR-124 expression. Furthermore, we investigated
the miR-124 and GRB2 expression levels of different genotypes including CC
(n=30), GC (n=18), and GG (n=4), which supported the hypothesis that the
presence of minor allele (C) of rs531564 polymorphism compromised the
expression of miR-124. Meanwhile, we also conducted real-time polymerase chain
reaction and Western blot analysis to study the expression of GRB2 among
different genotypes or pulmonary artery smooth muscle cells (PASMCs) treated
with miR-124 mimics, GRB2 small interfering RNA, and miR-124 inhibitors,
respectively, and found that introduction of miR-124 or GRB2 small interfering
RNA could reduce the expression of GRB2 and inhibit the proliferation of
PASMCs, while miR-124 upregulated the expression of GRB2 and promoted the
proliferation of PASMCs. A total of 412 COPD patients with PAH (n=182) or
without PAH (n=230) were recruited in this study, and more individuals carrying
at least one minor allele of rs531564 were found in the COPD patients with PAH
than in those without PAH (odds ratio: 0.61, 95% confidence interval:
0.41–0.91; P =0.166). In conclusion, the presence
of rs531564 minor allele may increase the risk of PAH in COPD by reducing
miR-124 expression, increasing GRB2 expression, and promoting the proliferation
of PASMCs.
Keywords: microRNA-124, rs531564, PAH, COPD,
PASMC, proliferation, hypoxia
