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1-Methyl-4-phenylpyridinium-induced cell death via autophagy through a Bcl-2/Beclin 1 complex-dependent pathway
Chutikorn Nopparat1, James E Porter, Manuchair Ebadi
1Research Center for Neuroscience, Institute of Molecular Biosciences, Mahidol University, Nakornpathom, Thailand.
Abstract:
Several lines of evidence suggest that the mechanism underlying drug-induced neuronal apoptosis is initiated by the increased production of reactive oxygen species (ROS). 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP), a neurotoxin, has been shown to initiate an apoptotic cascade by increasing ROS in the dopaminergic neurons of the substantia nigra, leading to the morphological and physiological features associated with Parkinson's disease. Recently, it has been reported that autophagy, a type of programmed cell death independent of the apoptotic cascade, also plays a role in neuronal damage. Although autophagy is negatively regulated by the mammalian target of rapamycin receptor (mTOR), there is some evidence showing a novel function for the anti-apoptotic protein Bcl-2. Bcl-2 is proposed to play a role in negatively regulating autophagy by blocking an essential protein in the signaling pathway, Beclin 1. Nevertheless, it is unclear whether autophagy is also correlated with apoptotic signaling in 1-methyl-4-phenylpyridinium (MPP(+)) toxicity. Therefore, we hypothesized that the MPP(+) toxicity generally associated with initiating the apoptotic signaling cascade also increases an autophagic phenotype in neuronal cells. Using the SK-N-SH dopaminergic cell lines, we demonstrate that MPP(+) increases the expression of microtubule-associated protein light chain 3 (LC3-II), an autophagosome membrane marker and the mTOR signaling pathway, and Beclin 1 while decreasing the Bcl-2 levels. Moreover, these expressions correlate with a decreased binding ratio between Bcl-2 and Beclin 1, in effect limiting the regulation of the downstream autophagic markers, such as LC3-II. Our results indicate that MPP(+) can induce autophagy in SK-N-SH cells by decreasing the Bcl-2/Beclin 1 complex.
Insights
1-methyl-4-phenylpyridinium (MPP(+)) induces autophagy in dopaminergic cells. This occurs by decreasing the Bcl-2/Beclin 1 complex, impacting cell death pathways relevant to Parkinson's disease.
Area of Science:
- Neuroscience
- Cell Biology
- Toxicology
Background:
- Drug-induced neuronal apoptosis is linked to reactive oxygen species (ROS).
- 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) causes Parkinson's-like symptoms by increasing ROS in dopaminergic neurons.
- Autophagy, a distinct cell death pathway, also contributes to neuronal damage and is regulated by mTOR and Bcl-2.
Purpose of the Study:
- To investigate the correlation between autophagy and apoptotic signaling in 1-methyl-4-phenylpyridinium (MPP(+)) toxicity.
- To determine if MPP(+) induces an autophagic phenotype in neuronal cells.
- To elucidate the role of the Bcl-2/Beclin 1 complex in MPP(+)-induced autophagy.
Main Methods:
- Utilized SK-N-SH dopaminergic cell lines.
- Assessed the expression of autophagy markers (LC3-II) and signaling pathway components (mTOR, Beclin 1, Bcl-2).
- Analyzed the binding ratio between Bcl-2 and Beclin 1.
Main Results:
- MPP(+) treatment increased the expression of LC3-II, mTOR, and Beclin 1.
- MPP(+) decreased the levels of Bcl-2.
- A reduced Bcl-2/Beclin 1 binding ratio was observed, correlating with increased LC3-II expression.
Conclusions:
- MPP(+) induces autophagy in dopaminergic cells.
- The mechanism involves the disruption of the Bcl-2/Beclin 1 complex, leading to the activation of downstream autophagic markers.
- This finding provides insight into the complex cell death mechanisms in neurodegenerative conditions like Parkinson's disease.
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