Eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal BAX.

In this study we examined the inhibition of hepatic dyslipidemia by Eucommia ulmoides extract (EUE). Using a screening assay for BAX inhibition we determined that EUE regulates BAX-induced cell death. Among various cell death stimuli tested EUE regulated palmitate-induced cell death, which involves...

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Main Authors: Geum-Hwa Lee, Mi-Rin Lee, Hwa-Young Lee, Seung Hyun Kim, Hye-Kyung Kim, Hyung-Ryong Kim, Han-Jung Chae
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3929538?pdf=render
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spelling doaj-e57e8e19e39f471f95c25d369609f6c12020-11-24T21:16:57ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0192e8801710.1371/journal.pone.0088017Eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal BAX.Geum-Hwa LeeMi-Rin LeeHwa-Young LeeSeung Hyun KimHye-Kyung KimHyung-Ryong KimHan-Jung ChaeIn this study we examined the inhibition of hepatic dyslipidemia by Eucommia ulmoides extract (EUE). Using a screening assay for BAX inhibition we determined that EUE regulates BAX-induced cell death. Among various cell death stimuli tested EUE regulated palmitate-induced cell death, which involves lysosomal BAX translocation. EUE rescued palmitate-induced inhibition of lysosomal V-ATPase, α-galactosidase, α-mannosidase, and acid phosphatase, and this effect was reversed by bafilomycin, a lysosomal V-ATPase inhibitor. The active components of EUE, aucubin and geniposide, showed similar inhibition of palmitate-induced cell death to that of EUE through enhancement of lysosome activity. Consistent with these in vitro findings, EUE inhibited the dyslipidemic condition in a high-fat diet animal model by regulating the lysosomal localization of BAX. This study demonstrates that EUE regulates lipotoxicity through a novel mechanism of enhanced lysosomal activity leading to the regulation of lysosomal BAX activation and cell death. Our findings further indicate that geniposide and aucubin, active components of EUE, may be therapeutic candidates for non-alcoholic fatty liver disease.http://europepmc.org/articles/PMC3929538?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Geum-Hwa Lee
Mi-Rin Lee
Hwa-Young Lee
Seung Hyun Kim
Hye-Kyung Kim
Hyung-Ryong Kim
Han-Jung Chae
spellingShingle Geum-Hwa Lee
Mi-Rin Lee
Hwa-Young Lee
Seung Hyun Kim
Hye-Kyung Kim
Hyung-Ryong Kim
Han-Jung Chae
Eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal BAX.
PLoS ONE
author_facet Geum-Hwa Lee
Mi-Rin Lee
Hwa-Young Lee
Seung Hyun Kim
Hye-Kyung Kim
Hyung-Ryong Kim
Han-Jung Chae
author_sort Geum-Hwa Lee
title Eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal BAX.
title_short Eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal BAX.
title_full Eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal BAX.
title_fullStr Eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal BAX.
title_full_unstemmed Eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal BAX.
title_sort eucommia ulmoides cortex, geniposide and aucubin regulate lipotoxicity through the inhibition of lysosomal bax.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description In this study we examined the inhibition of hepatic dyslipidemia by Eucommia ulmoides extract (EUE). Using a screening assay for BAX inhibition we determined that EUE regulates BAX-induced cell death. Among various cell death stimuli tested EUE regulated palmitate-induced cell death, which involves lysosomal BAX translocation. EUE rescued palmitate-induced inhibition of lysosomal V-ATPase, α-galactosidase, α-mannosidase, and acid phosphatase, and this effect was reversed by bafilomycin, a lysosomal V-ATPase inhibitor. The active components of EUE, aucubin and geniposide, showed similar inhibition of palmitate-induced cell death to that of EUE through enhancement of lysosome activity. Consistent with these in vitro findings, EUE inhibited the dyslipidemic condition in a high-fat diet animal model by regulating the lysosomal localization of BAX. This study demonstrates that EUE regulates lipotoxicity through a novel mechanism of enhanced lysosomal activity leading to the regulation of lysosomal BAX activation and cell death. Our findings further indicate that geniposide and aucubin, active components of EUE, may be therapeutic candidates for non-alcoholic fatty liver disease.
url http://europepmc.org/articles/PMC3929538?pdf=render
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