Related Experiment Video
Updated: Aug 25, 2026

Gene-environment Interaction Models to Unmask Susceptibility Mechanisms in Parkinson's Disease
Published on: January 7, 2014
Enhanced substantia nigra mitochondrial pathology in human alpha-synuclein transgenic mice after treatment with MPTP
David D Song1, Clifford W Shults, Abbyann Sisk
1Neurology Service, VA San Diego Healthcare System, San Diego, CA 92161-9127, USA. dsong@vapop.ucsd.edu
Abstract:
Recent studies have implicated alpha-synuclein (alpha-S) in the pathogenesis of Parkinson's disease (PD). The mechanisms underlying PD are not completely understood; however, mitochondrial complex I inhibition and oxidative injury may be involved. Because the neurotoxin 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) is a potent complex I inhibitor that can cause oxidative injury and mimic many aspects of PD in treated animals, we sought to determine whether the overexpression of alpha-S in transgenic (tg) mice (alpha-S-tg) would enhance the substantia nigra (SN) pathology resulting from treatment with MPTP. For this purpose, alpha-S-tg mice were produced expressing high levels of wild-type (wt) human alpha-S under the control of the neuron-specific Thy-1 promoter. Alpha-S-tg mice and non-tg controls were treated with MPTP (15 mg/kg ip, twice a week for 2 weeks) or saline (Sal) and then examined 2 weeks after completion of treatment by transmission electron microscopy (EM). We found that alpha-S-tg mice treated with MPTP had extensive mitochondrial alterations, increases in mitochondrial size, filamentous neuritic aggregations, axonal degeneration, and formation of electron dense perinuclear cytoplasmic inclusions in the SN that did not occur in the hippocampus or neocortex, nor in MPTP-treated non-tg mice or Sal-treated alpha-S-tg mice. These findings support the potential involvement of alpha-S expression in the vulnerability of SN neurons to toxicity from mitochondrial complex I inhibitors and the subsequent development of neurodegenerative pathology.
Insights
Overexpression of alpha-synuclein (alpha-S) in mice worsened substantia nigra (SN) pathology after MPTP exposure, suggesting alpha-S enhances vulnerability to neurotoxins in Parkinson's disease.
Area of Science:
- Neuroscience
- Pathology
- Toxicology
Background:
- Parkinson's disease (PD) pathogenesis involves alpha-synuclein (alpha-S) and mitochondrial dysfunction.
- Mitochondrial complex I inhibition and oxidative stress are implicated in PD mechanisms.
- The neurotoxin MPTP models PD by inhibiting complex I and causing oxidative injury.
Purpose of the Study:
- To investigate if alpha-synuclein overexpression enhances MPTP-induced substantia nigra (SN) pathology.
- To determine the role of alpha-S in neuronal vulnerability to mitochondrial complex I inhibitors.
Main Methods:
- Transgenic (tg) mice overexpressing wild-type human alpha-S (alpha-S-tg) were generated.
- Alpha-S-tg mice and non-tg controls received MPTP or saline treatment.
- Substantia nigra (SN) pathology was examined using transmission electron microscopy (EM).
Main Results:
- MPTP-treated alpha-S-tg mice exhibited significant mitochondrial alterations in the SN.
- These mice showed increased mitochondrial size, axonal degeneration, and cytoplasmic inclusions.
- Pathology was specific to the SN and absent in other brain regions or control groups.
Conclusions:
- Alpha-synuclein expression may increase SN neuron susceptibility to mitochondrial complex I inhibitor toxicity.
- Alpha-S involvement in neurodegenerative pathology development is supported.
- Findings highlight a potential mechanism in Parkinson's disease progression.

