Cargando…

The involvement of Parkin-dependent mitophagy in the anti-cancer activity of Ginsenoside

Colon cancer, the third most frequent occurred cancer, has high mortality and extremely poor prognosis. Ginsenoside, the active components of traditional Chinese herbal medicine Panax ginseng, exerts antitumor effect in various cancers, including colon cancer. However, the detailed molecular mechani...

Descripción completa

Detalles Bibliográficos
Autores principales: Sun, Xin, Hong, Yeting, Shu, Yuhan, Wu, Caixia, Ye, Guiqin, Chen, Hanxiao, Zhou, Hongying, Gao, Ruilan, Zhang, Jianbin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058836/
https://www.ncbi.nlm.nih.gov/pubmed/35509820
http://dx.doi.org/10.1016/j.jgr.2021.06.009
_version_ 1784698199199449088
author Sun, Xin
Hong, Yeting
Shu, Yuhan
Wu, Caixia
Ye, Guiqin
Chen, Hanxiao
Zhou, Hongying
Gao, Ruilan
Zhang, Jianbin
author_facet Sun, Xin
Hong, Yeting
Shu, Yuhan
Wu, Caixia
Ye, Guiqin
Chen, Hanxiao
Zhou, Hongying
Gao, Ruilan
Zhang, Jianbin
author_sort Sun, Xin
collection PubMed
description Colon cancer, the third most frequent occurred cancer, has high mortality and extremely poor prognosis. Ginsenoside, the active components of traditional Chinese herbal medicine Panax ginseng, exerts antitumor effect in various cancers, including colon cancer. However, the detailed molecular mechanism of Ginsenoside in the tumor suppression have not been fully elucidated. Here, we chose the representative ginsenoside Rg3 and reported for the first time that Rg3 induces mitophagy in human colon cancer cells, which is responsible for its anticancer effect. Rg3 treatment leads to mitochondria damage and the formation of mitophagosome; when autophagy is inhibited, the clearance of damaged mitochondria can be reversed. Next, our results showed that Rg3 treatment activates the PINK1-Parkin signaling pathway and recruits Parkin and ubiquitin proteins to mitochondria to induce mitophagy. GO analysis of Parkin targets showed that Parkin interacts with a large number of mitochondrial proteins and regulates the molecular function of mitochondria. The cellular energy metabolism enzyme GAPDH is validated as a novel substrate of Parkin, which is ubiquitinated by Parkin. Moreover, GAPDH participates in the Rg3-induced mitophagy and regulates the translocation of Parkin to mitochondria. Functionally, Rg3 exerts the inhibitory effect through regulating the nonglycolytic activity of GAPDH, which could be associated with the cellular oxidative stress. Thus, our results revealed GAPDH ubiquitination by Parkin as a crucial mechanism for mitophagy induction that contributes to the tumor-suppressive function of ginsenoside, which could be a novel treatment strategy for colon cancer.
format Online
Article
Text
id pubmed-9058836
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-90588362022-05-03 The involvement of Parkin-dependent mitophagy in the anti-cancer activity of Ginsenoside Sun, Xin Hong, Yeting Shu, Yuhan Wu, Caixia Ye, Guiqin Chen, Hanxiao Zhou, Hongying Gao, Ruilan Zhang, Jianbin J Ginseng Res Research Article Colon cancer, the third most frequent occurred cancer, has high mortality and extremely poor prognosis. Ginsenoside, the active components of traditional Chinese herbal medicine Panax ginseng, exerts antitumor effect in various cancers, including colon cancer. However, the detailed molecular mechanism of Ginsenoside in the tumor suppression have not been fully elucidated. Here, we chose the representative ginsenoside Rg3 and reported for the first time that Rg3 induces mitophagy in human colon cancer cells, which is responsible for its anticancer effect. Rg3 treatment leads to mitochondria damage and the formation of mitophagosome; when autophagy is inhibited, the clearance of damaged mitochondria can be reversed. Next, our results showed that Rg3 treatment activates the PINK1-Parkin signaling pathway and recruits Parkin and ubiquitin proteins to mitochondria to induce mitophagy. GO analysis of Parkin targets showed that Parkin interacts with a large number of mitochondrial proteins and regulates the molecular function of mitochondria. The cellular energy metabolism enzyme GAPDH is validated as a novel substrate of Parkin, which is ubiquitinated by Parkin. Moreover, GAPDH participates in the Rg3-induced mitophagy and regulates the translocation of Parkin to mitochondria. Functionally, Rg3 exerts the inhibitory effect through regulating the nonglycolytic activity of GAPDH, which could be associated with the cellular oxidative stress. Thus, our results revealed GAPDH ubiquitination by Parkin as a crucial mechanism for mitophagy induction that contributes to the tumor-suppressive function of ginsenoside, which could be a novel treatment strategy for colon cancer. Elsevier 2022-03 2021-07-08 /pmc/articles/PMC9058836/ /pubmed/35509820 http://dx.doi.org/10.1016/j.jgr.2021.06.009 Text en © 2021 The Korean Society of Ginseng. Publishing services by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Sun, Xin
Hong, Yeting
Shu, Yuhan
Wu, Caixia
Ye, Guiqin
Chen, Hanxiao
Zhou, Hongying
Gao, Ruilan
Zhang, Jianbin
The involvement of Parkin-dependent mitophagy in the anti-cancer activity of Ginsenoside
title The involvement of Parkin-dependent mitophagy in the anti-cancer activity of Ginsenoside
title_full The involvement of Parkin-dependent mitophagy in the anti-cancer activity of Ginsenoside
title_fullStr The involvement of Parkin-dependent mitophagy in the anti-cancer activity of Ginsenoside
title_full_unstemmed The involvement of Parkin-dependent mitophagy in the anti-cancer activity of Ginsenoside
title_short The involvement of Parkin-dependent mitophagy in the anti-cancer activity of Ginsenoside
title_sort involvement of parkin-dependent mitophagy in the anti-cancer activity of ginsenoside
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058836/
https://www.ncbi.nlm.nih.gov/pubmed/35509820
http://dx.doi.org/10.1016/j.jgr.2021.06.009
work_keys_str_mv AT sunxin theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT hongyeting theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT shuyuhan theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT wucaixia theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT yeguiqin theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT chenhanxiao theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT zhouhongying theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT gaoruilan theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT zhangjianbin theinvolvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT sunxin involvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT hongyeting involvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT shuyuhan involvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT wucaixia involvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT yeguiqin involvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT chenhanxiao involvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT zhouhongying involvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT gaoruilan involvementofparkindependentmitophagyintheanticanceractivityofginsenoside
AT zhangjianbin involvementofparkindependentmitophagyintheanticanceractivityofginsenoside