Molecular mechanisms underlying protective effects of quercetin against mitochondrial dysfunction and progressive dopaminergic neurodegeneration in cell culture and MitoPark transgenic mouse models of Parkinson's Disease

被引:171
作者
Ay, Muhammet [1 ]
Luo, Jie [1 ]
Langley, Monica [1 ]
Jin, Huajun [1 ]
Anantharam, Vellareddy [1 ]
Kanthasamy, Arthi [1 ]
Kanthasamy, Anumantha G. [1 ]
机构
[1] Iowa State Univ, Dept Biomed Sci, Parkinsons Disorder Res Lab, Iowa Ctr Adv Neurotoxicol, Ames, IA USA
基金
美国国家卫生研究院;
关键词
mitochondrial biogenesis; MitoPark; Parkinson's disease; PGC-1; alpha; PKD1; quercetin; KINASE C-DELTA; OXIDATIVE-STRESS; ALZHEIMERS-DISEASE; UP-REGULATION; VITAMIN-C; PGC-1-ALPHA EXPRESSION; NEURONAL DEGENERATION; HUNTINGTONS-DISEASE; COACTIVATOR PGC-1; ALPHA-SYNUCLEIN;
D O I
10.1111/jnc.14033
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Quercetin, one of the major flavonoids in plants, has been recently reported to have neuroprotective effects against neurodegenerative processes. However, since the molecular signaling mechanisms governing these effects are not well clarified, we evaluated quercetin's effect on the neuroprotective signaling events in dopaminergic neuronal models and further tested its efficacy in the MitoPark transgenic mouse model of Parkinson's disease (PD). Western blot analysis revealed that quercetin significantly induced the activation of two major cell survival kinases, protein kinase D1 (PKD1) and Akt in MN9D dopaminergic neuronal cells. Furthermore, pharmacological inhibition or siRNA knockdown of PKD1 blocked the activation of Akt, suggesting that PKD1 acts as an upstream regulator of Akt in quercetin-mediated neuroprotective signaling. Quercetin also enhanced cAMP response-element binding protein phosphorylation and expression of the cAMP response-element binding protein target gene brain-derived neurotrophic factor. Results from qRT-PCR, Western blot analysis, mtDNA content analysis, and MitoTracker assay experiments revealed that quercetin augmented mitochondrial biogenesis. Quercetin also increased mitochondrial bioenergetics capacity and protected MN9D cells against 6-hydroxydopamine-induced neurotoxicity. To further evaluate the neuroprotective efficacy of quercetin against the mitochondrial dysfunction underlying PD, we used the progressive dopaminergic neurodegenerative MitoPark transgenic mouse model of PD. Oral administration of quercetin significantly reversed behavioral deficits, striatal dopamine depletion, and TH neuronal cell loss in MitoPark mice. Together, our findings demonstrate that quercetin activates the PKD1-Akt cell survival signaling axis and suggest that further exploration of quercetin as a promising neuroprotective agent for treating PD may offer clinical benefits.
引用
收藏
页码:766 / 782
页数:17
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