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Cited 15 time in webofscience Cited 15 time in scopus
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N-Methyl, N-propynyl-2-phenylethylamine (MPPE), a Selegiline Analog, Attenuates MPTP-induced Dopaminergic Toxicity with Guaranteed Behavioral Safety: Involvement of Inhibitions of Mitochondrial Oxidative Burdens and p53 Gene-elicited Pro-apoptotic Change

Authors
Shin, Eun-JooNam, YunsungLee, Ji WonPhuong-Khue Thi NguyenYoo, Ji EunThe-Vinh TranJeong, Ji HoonJang, Choon-GonOh, Young J.Youdim, Moussa B. H.Lee, Phil HoNabeshima, ToshitakaKim, Hyoung-Chun
Issue Date
Nov-2016
Publisher
HUMANA PRESS INC
Keywords
N-Methyl, N-propynyl-2-phenylethylamine; Mitochondria; Selegiline; Oxidative stress; Behavioral safety; p53 gene knockoutmice; Pro-apoptosis; Parkinson's disease
Citation
MOLECULAR NEUROBIOLOGY, v.53, no.9, pp 6251 - 6269
Pages
19
Journal Title
MOLECULAR NEUROBIOLOGY
Volume
53
Number
9
Start Page
6251
End Page
6269
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/1656
DOI
10.1007/s12035-015-9527-1
ISSN
0893-7648
1559-1182
Abstract
Selegiline is a monoamine oxidase-B (MAO-B) inhibitor with anti-Parkinsonian effects, but it is metabolized to amphetamines. Since another MAO-B inhibitor N-Methyl, N-propynyl-2-phenylethylamine (MPPE) is not metabolized to amphetamines, we examined whether MPPE induces behavioral side effects and whether MPPE affects dopaminergic toxicity induced by 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP). Multiple doses of MPPE (2.5 and 5 mg/kg/day) did not show any significant locomotor activity and conditioned place preference, whereas selegiline (2.5 and 5 mg/kg/day) significantly increased these behavioral side effects. Treatment with MPPE resulted in significant attenuations against decreases in mitochondrial complex I activity, mitochondrial Mn-SOD activity, and expression induced by MPTP in the striatum of mice. Consistently, MPPE significantly attenuated MPTP-induced oxidative stress and MPPE-mediated antioxidant activity appeared to be more pronounced in mitochondrial-fraction than in cytosolic-fraction. Because MPTP promoted mitochondrial p53 translocation and p53/Bcl-xL interaction, it was also examined whether mitochondrial p53 inhibitor pifithrin-mu attenuates MPTP neurotoxicity. MPPE, selegiline, or pifithrin-mu significantly attenuated mitochondrial p53/Bcl-xL interaction, impaired mitochondrial transmembrane potential, cytosolic cytochrome c release, and cleaved caspase-3 in wild-type mice. Subsequently, these compounds significantly ameliorated MPTP-induced motor impairments. Neuroprotective effects of MPPE appeared to be more prominent than those of selegiline. MPPE or selegiline did not show any additional protective effects against the attenuation by p53 gene knockout, suggesting that p53 gene is a critical target for these compounds. Our results suggest that MPPE possesses anti-Parkinsonian potentials with guaranteed behavioral safety and that the underlying mechanism of MPPE requires inhibition of mitochondrial oxidative stress, mitochondrial translocation of p53, and pro-apoptotic process.
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