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Lactulose and Melibiose Inhibit α-Synuclein Aggregation and Up-Regulate Autophagy to Reduce Neuronal Vulnerability

Parkinson’s disease (PD) is a neurodegenerative disease characterized by selective dopaminergic (DAergic) neuronal degeneration in the substantia nigra (SN) and proteinaceous α-synuclein-positive Lewy bodies and Lewy neuritis. As a chemical chaperone to promote protein stability and an autophagy ind...

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Autores principales: Chen, Chiung Mei, Lin, Chih-Hsin, Wu, Yih-Ru, Yen, Chien-Yu, Huang, Yu-Ting, Lin, Jia-Lan, Lin, Chung-Yin, Chen, Wan-Ling, Chao, Chih-Ying, Lee-Chen, Guey-Jen, Su, Ming-Tsan, Chang, Kuo-Hsuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290909/
https://www.ncbi.nlm.nih.gov/pubmed/32429337
http://dx.doi.org/10.3390/cells9051230
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author Chen, Chiung Mei
Lin, Chih-Hsin
Wu, Yih-Ru
Yen, Chien-Yu
Huang, Yu-Ting
Lin, Jia-Lan
Lin, Chung-Yin
Chen, Wan-Ling
Chao, Chih-Ying
Lee-Chen, Guey-Jen
Su, Ming-Tsan
Chang, Kuo-Hsuan
author_facet Chen, Chiung Mei
Lin, Chih-Hsin
Wu, Yih-Ru
Yen, Chien-Yu
Huang, Yu-Ting
Lin, Jia-Lan
Lin, Chung-Yin
Chen, Wan-Ling
Chao, Chih-Ying
Lee-Chen, Guey-Jen
Su, Ming-Tsan
Chang, Kuo-Hsuan
author_sort Chen, Chiung Mei
collection PubMed
description Parkinson’s disease (PD) is a neurodegenerative disease characterized by selective dopaminergic (DAergic) neuronal degeneration in the substantia nigra (SN) and proteinaceous α-synuclein-positive Lewy bodies and Lewy neuritis. As a chemical chaperone to promote protein stability and an autophagy inducer to clear aggregate-prone proteins, a disaccharide trehalose has been reported to alleviate neurodegeneration in PD cells and mouse models. Its trehalase-indigestible analogs, lactulose and melibiose, also demonstrated potentials to reduce abnormal protein aggregation in spinocerebellar ataxia cell models. In this study, we showed the potential of lactulose and melibiose to inhibit α-synuclein aggregation using biochemical thioflavin T fluorescence, cryogenic transmission electron microscopy (cryo-TEM) and prokaryotic split Venus complementation assays. Lactulose and melibiose further reduced α-synuclein aggregation and associated oxidative stress, as well as protected cells against α-synuclein-induced neurotoxicity by up-regulating autophagy and nuclear factor, erythroid 2 like 2 (NRF2) pathway in DAergic neurons derived from SH-SY5Y cells over-expressing α-synuclein. Our findings strongly indicate the potential of lactulose and melibiose for mitigating PD neurodegeneration, offering new drug candidates for PD treatment.
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spelling pubmed-72909092020-06-17 Lactulose and Melibiose Inhibit α-Synuclein Aggregation and Up-Regulate Autophagy to Reduce Neuronal Vulnerability Chen, Chiung Mei Lin, Chih-Hsin Wu, Yih-Ru Yen, Chien-Yu Huang, Yu-Ting Lin, Jia-Lan Lin, Chung-Yin Chen, Wan-Ling Chao, Chih-Ying Lee-Chen, Guey-Jen Su, Ming-Tsan Chang, Kuo-Hsuan Cells Article Parkinson’s disease (PD) is a neurodegenerative disease characterized by selective dopaminergic (DAergic) neuronal degeneration in the substantia nigra (SN) and proteinaceous α-synuclein-positive Lewy bodies and Lewy neuritis. As a chemical chaperone to promote protein stability and an autophagy inducer to clear aggregate-prone proteins, a disaccharide trehalose has been reported to alleviate neurodegeneration in PD cells and mouse models. Its trehalase-indigestible analogs, lactulose and melibiose, also demonstrated potentials to reduce abnormal protein aggregation in spinocerebellar ataxia cell models. In this study, we showed the potential of lactulose and melibiose to inhibit α-synuclein aggregation using biochemical thioflavin T fluorescence, cryogenic transmission electron microscopy (cryo-TEM) and prokaryotic split Venus complementation assays. Lactulose and melibiose further reduced α-synuclein aggregation and associated oxidative stress, as well as protected cells against α-synuclein-induced neurotoxicity by up-regulating autophagy and nuclear factor, erythroid 2 like 2 (NRF2) pathway in DAergic neurons derived from SH-SY5Y cells over-expressing α-synuclein. Our findings strongly indicate the potential of lactulose and melibiose for mitigating PD neurodegeneration, offering new drug candidates for PD treatment. MDPI 2020-05-16 /pmc/articles/PMC7290909/ /pubmed/32429337 http://dx.doi.org/10.3390/cells9051230 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Chiung Mei
Lin, Chih-Hsin
Wu, Yih-Ru
Yen, Chien-Yu
Huang, Yu-Ting
Lin, Jia-Lan
Lin, Chung-Yin
Chen, Wan-Ling
Chao, Chih-Ying
Lee-Chen, Guey-Jen
Su, Ming-Tsan
Chang, Kuo-Hsuan
Lactulose and Melibiose Inhibit α-Synuclein Aggregation and Up-Regulate Autophagy to Reduce Neuronal Vulnerability
title Lactulose and Melibiose Inhibit α-Synuclein Aggregation and Up-Regulate Autophagy to Reduce Neuronal Vulnerability
title_full Lactulose and Melibiose Inhibit α-Synuclein Aggregation and Up-Regulate Autophagy to Reduce Neuronal Vulnerability
title_fullStr Lactulose and Melibiose Inhibit α-Synuclein Aggregation and Up-Regulate Autophagy to Reduce Neuronal Vulnerability
title_full_unstemmed Lactulose and Melibiose Inhibit α-Synuclein Aggregation and Up-Regulate Autophagy to Reduce Neuronal Vulnerability
title_short Lactulose and Melibiose Inhibit α-Synuclein Aggregation and Up-Regulate Autophagy to Reduce Neuronal Vulnerability
title_sort lactulose and melibiose inhibit α-synuclein aggregation and up-regulate autophagy to reduce neuronal vulnerability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7290909/
https://www.ncbi.nlm.nih.gov/pubmed/32429337
http://dx.doi.org/10.3390/cells9051230
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