Formoterol Acting via β2-Adrenoreceptor Restores Mitochondrial Dysfunction Caused by Parkinson’s Disease-Related UQCRC1 Mutation and Improves Mitochondrial Homeostasis Including Dynamic and Transport

Author:

Chang Jui-Chih1ORCID,Chang Huei-Shin1,Chao Yi-Chun2,Huang Ching-Shan1ORCID,Lin Chin-Hsien3ORCID,Wu Zhong-Sheng4,Chang Hui-Ju1,Liu Chin-San5678,Chuang Chieh-Sen5

Affiliation:

1. Center of Regenerative Medicine and Tissue Repair, Institute of ATP, Changhua Christian Hospital, Changhua 500, Taiwan

2. Inflammation Research & Drug Development Center, Changhua Christian Hospital, Changhua 500, Taiwan

3. Department of Neurology, National Taiwan University Hospital, Taipei 100, Taiwan

4. Department of General Research Laboratory of Research, Changhua Christian Hospital, Changhua 500, Taiwan

5. Department of Neurology, Changhua Christian Hospital, Changhua 500, Taiwan

6. Vascular and Genomic Center, Institute of ATP, Changhua Christian Hospital, Changhua 500, Taiwan

7. Graduate Institute of Integrated Medicine, College of Chinese Medicine, China Medical University, Taichung 404, Taiwan

8. College of Medicine, National Chung Hsing University, Taichung 402, Taiwan

Abstract

Formoterol, a β2-adrenergic receptor (β2AR) agonist, shows promise in various diseases, but its effectiveness in Parkinson’s disease (PD) is debated, with unclear regulation of mitochondrial homeostasis. This study employed a cell model featuring mitochondrial ubiquinol-cytochrome c reductase core protein 1 (UQCRC1) variants associated with familial parkinsonism, demonstrating mitochondrial dysfunction and dynamic imbalance, exploring the therapeutic effects and underlying mechanisms of formoterol. Results revealed that 24-h formoterol treatment enhanced cell proliferation, viability, and neuroprotection against oxidative stress. Mitochondrial function, encompassing DNA copy number, repatriation, and complex III-linked respiration, was comprehensively restored, along with the dynamic rebalance of fusion/fission events. Formoterol reduced extensive hypertubulation, in contrast to mitophagy, by significantly upregulating protein Drp-1, in contrast to fusion protein Mfn2, mitophagy-related protein Parkin. The upstream mechanism involved the restoration of ERK signaling and the inhibition of Akt overactivity, contingent on the activation of β2-adrenergic receptors. Formoterol additionally aided in segregating healthy mitochondria for distribution and transport, therefore normalizing mitochondrial arrangement in mutant cells. This study provides preliminary evidence that formoterol offers neuroprotection, acting as a mitochondrial dynamic balance regulator, making it a promising therapeutic candidate for PD.

Funder

National Science and Technology Council

Changhua Christine Hospital

Publisher

MDPI AG

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