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miR-214-3p exacerbates mitochondrial dysfunction in parkinson's disease: a multi-omics and mechanistic study

Xinyu Wang; Dan Wang; Caiyun Zhang; Hongmei Zhang; Wenhui Wang; Wenxian Qian; Jin Zhou; Yunli Zhao; Jinghan Gao; Zheng Hu; Jiamin Qin; Zhizhong Wang; Yishan Zheng; Guoping Yin; Hui Dong
Experimental Brain Research · Vol. 244, Issue 4 · 2026

Abstract

Parkinson’s disease (PD) involves the loss of dopaminergic neurons, and prodromal PD exhibits elevated miR-214-3p, suggesting its role as a biomarker and pathogenic factor. This study investigated miR-214-3p’s effects on mitochondrial function in dopaminergic SH-SY5Y cells and mouse primary cortical neurons. In SH-SY5Y cells, proteomic/transcriptomic analyses and target prediction confirmed GFM1 as a direct target of miR-214-3p. miR-214-3p upregulation downregulated GFM1, causing severe mitochondrial bioenergetic impairment: increased reactive oxygen species (ROS), reduced oxygen consumption, diminished ATP production, and decreased respiratory chain complexes (RCC) I/IV expression. Critically, restoring GFM1 reversed these mitochondrial deficits and neuronal dysfunction. In mouse primary cortical neurons, miR-214-3p overexpression also impaired RCC I/IV but did not affect GFM1, revealing a cell type-dependent regulatory mechanism. These findings demonstrate that elevated miR-214-3p impairs mitochondrial function in a cell-specific manner. In dopaminergic cells, this damage is mediated by GFM1 downregulation, highlighting the miR-214-3p/GFM1 axis as a potential cell-type specific therapeutic target for PD and related dopaminergic neuronopathies.

Bibliographic Information

JournalExperimental Brain Research
PublisherSpringer
Publication Date2026-04-01
Publication Year2026
Volume244
Issue4
Document TypeJournal Article
Print ISSN0014-4819
eISSN1432-1106
DOI10.1007/s00221-026-07267-0

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NARA Access Coverage1966-01-01~Current
Journal Homepagehttps://www.springer.com/journal/221
Publisher PageOpen Publisher Page
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