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Down-regulation of HSPA9 reduces tyrosine hydroxylase-positive neurons in mouse substantia nigra and induces Parkinson's disease-like motor impairmentsopen access

Authors
Hyung, HyejinJang, SoyoungKim, Si-YongBae, Ji-EunPark, Ji YeongLim, Su-GeunKo, JiwonJang, SoyeonKim, Joon BumChae, Hee YoungPark, SongYi, JunkooChoi, Dong KyuKim, Myoung OkLee, Hyun-ShikCho, Dong-HyungYoung Ryoo, Zae
Issue Date
Dec-2025
Publisher
한국통합생물학회
Keywords
HSPA9; Parkinson's disease; movement disorder; mitochondrial dysfunction
Citation
Animal Cells and Systems, v.29, no.1, pp 615 - 627
Pages
13
Indexed
SCIE
SCOPUS
KCI
Journal Title
Animal Cells and Systems
Volume
29
Number
1
Start Page
615
End Page
627
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/80947
DOI
10.1080/19768354.2025.2569875
ISSN
1976-8354
2151-2485
Abstract
Parkinson's disease (PD) is a progressive neurological disorder characterized by the degeneration of midbrain dopaminergic neurons and disabling motor impairments. Heat shock protein family A member 9 (HSPA9) play a crucial role in neuronal homeostasis by regulating the import of various mitochondrial proteins. HSPA9 is down-regulated in neurodegenerative diseases such as Alzheimer's disease and PD, and its loss leads to excessive mitochondrial fragmentation with oxidative stress, which subsequently causes damage to dopaminergic neurons. Moreover, HSPA9 interacts with multiple PD-associated proteins, including Pink1, DJ-1, and alpha-synuclein, however precise roles of HSPA9 in PD pathophysiology remain unclear. To further explore the contributions of HSPA9 in PD pathogenesis, we developed an HSPA9 knockout mouse. Haploinsufficiency of Hspa9 (Hspa9+/-) was associated with the loss of tyrosine hydroxylase-positive neurons in the striatum and substantia nigra. Furthermore, Hspa9 haploinsufficiency induced excessive mitochondrial fission, enhanced apoptotic signaling, and resulted in diminished motor performance during the rotarod test. Administration of the mitochondrial neurotoxin 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) in Hspa9+/- mice further exacerbated the loss of dopaminergic neurons, aggravated motor impairments, and enhanced activation of apoptosis effector caspase-3. These results suggest that down-regulation of HSPA9 may contribute to the development and progression of PD, potentially offering a new therapeutic strategy for PD treatment.
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농업생명과학대학 > 축산과학부 > Journal Articles

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농업생명과학대학 (축산과학부)
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