Pgc-1α overexpression downregulates Pitx3 and increases susceptibility to MPTP toxicity associated with decreased Bdnf.

["Clark J", "Silvaggi J", "Kiselak T", "Zheng K", "Clore E", "Dai Y", "Bass C", "Simon D"]
PloS one 2012
Open on PubMed

Multiple mechanisms likely contribute to neuronal death in Parkinson's disease (PD), including mitochondrial dysfunction and oxidative stress. Peroxisome proliferator-activated receptor gamma co-activator-1 alpha (PGC-1α) positively regulates the expression of genes required for mitochondrial biogenesis and the cell's antioxidant responses. Also, expression of PGC-1α-regulated genes is low in substantia nigra (SN) neurons in early PD. Thus upregulation of PGC-1α is a candidate neuroprotective strategy in PD. Here, an adeno-associated virus (AAV) was used to induce unilateral overexpression of Pgc-1α, or a control gene, in the SN of wild-type C57BL/6CR mice. Three weeks after AAV administration, mice were treated with saline or MPTP. Overexpression of Pgc-1α in the SN induced expression of target genes, but unexpectedly it also greatly reduced the expression of tyrosine hydroxylase (Th) and other markers of the dopaminergic phenotype with resultant severe loss of striatal dopamine. Reduced Th expression was associated with loss of Pitx3, a transcription factor that is critical for the development and maintenance of dopaminergic cells. Expression of the neurotrophic factor Bdnf, which also is regulated by Pitx3, similarly was reduced. Overexpression of Pgc-1α also led to increased sensitivity to MPTP-induced death of Th+ neurons. Pgc-1α overexpression alone, in the absence of MPTP treatment, did not lead to cell loss in the SN or to loss of dopaminergic terminals. These data demonstrate that overexpression of Pgc-1α results in dopamine depletion associated with lower levels of Pitx3 and enhances susceptibility to MPTP. These data may have ramifications for neuroprotective strategies targeting overexpression of PGC-1α in PD.

6 Figures Extracted
Figure 1
Figure 1 PMC
AAV2/10 expresses functional Pgc-1α in the nigro-striatal system. A. SYBR-green PCR analysis of Pgc-1α and Pgc-1α -target gene mRNA levels after sa...
Figure 2
Figure 2 PMC
Western blot data for the mitochondrial marker CoxIV. 5 µg of whole-cell lysate from SN or striatal samples from saline or MPTP-treated Pgc-1α-microin...
Figure 3
Figure 3 PMC
Amphetamine-induced rotational behavior and HPLC analysis of striatal DA. A. Mean number of ipsilateral and contralateral turns made by each group ove...
Figure 4
Figure 4 PMC
Th and Dat immunohistochemical staining and stereological cell counts. A. Representative images of the striatum used for Th densitometry with line gra...
Figure 5
Figure 5 PMC
Analysis of markers of the dopaminergic phenotype. A. SYBR-green PCR analysis of mRNA levels of Th, Dat and Vmat2 in mCherry and Pgc-1α overexpres...
Figure 6
Figure 6 PMC
Data from lower-titer injections. A. SYBR-green PCR analysis of Pgc-1α and Pgc-1α target gene mRNA levels after saline treatment in mice microinjected...