4.5 Article

Histone Deacetylase 4 Inhibition Reduces Rotenone-Induced Alpha-Synuclein Accumulation via Autophagy in SH-SY5Y Cells

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BRAIN SCIENCES
卷 13, 期 4, 页码 -

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MDPI
DOI: 10.3390/brainsci13040670

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Parkinson's disease; histone deacetylases; histone deacetylase inhibitor; gene therapy; neuroprotection

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The study found that HDAC4 is highly expressed in the brain tissues of Parkinson's disease (PD) patients. The inhibition of HDAC4 by mc1568 can reduce the levels of alpha-synuclein and activate autophagy in brain cells. These findings suggest that HDAC4 may be a potential therapeutic target for PD.
(1) Background: Parkinson's disease (PD) is the most common movement disorder. Imbalanced protein homeostasis and alpha-syn aggregation are involved in PD pathogenesis. Autophagy is related to the occurrence and development of PD and can be regulated by histone deacetylases (HDACs). Various inhibitors of HDACs exert neuroprotective effects within in vitro and in vivo models of PD. HDAC4, a class II HDAC, colocalizes with alpha-synuclein and ubiquitin in Lewy bodies and also accumulates in the nuclei of dopaminergic neurons in PD models. (2) Methods: In the present study, the gene expression profile of HDACs from two previously reported datasets in the GEO database was analyzed, and the RNA levels of HDAC4 in brain tissues were compared between PD patients and healthy controls. In vitro, SH-SY5Y cells transfected with HDAC4 shRNA or pretreated with mc1568 were treated with 1 mu M of rotenone for 24 h. Then, the levels of alpha-syn, LC3, and p62 were detected using Western blot analysis and immunofluorescent staining, and cell viabilities were detected using Cell Counting Kit-8 (CCK-8). (3) Results: HDAC4 was highly expressed in PD substantia nigra and locus coeruleus. Mc1568, an inhibitor of HDAC4, decreased alpha-synuclein levels in rotenone-treated SH-SY5Y cells in a concentration-dependent manner and activated autophagy, which was impaired by rotenone. The knockdown of HDAC4 reversed rotenone-induced alpha-syn accumulation in SH-SY5Y cells and protected the neurons by enhancing autophagy. (4) Conclusions: HDAC4 is a potential therapeutic target for PD. The inhibition of HDAC4 by mc1568 or a gene block can reduce alpha-syn levels by regulating the autophagy process in PD. Mc1568 is a promising therapeutic agent for PD and other disorders related to alpha-syn accumulation.

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