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Prevention effect of rare ginsenosides against stress-hormone induced MTOC amplification

Stress has been suggested as one of important cause of human cancer without molecular biological evidence. Thus, we test the effect of stress-related hormones on cell viability and mitotic fidelity. Similarly to estrogen, stress hormone cortisol and its relative cortisone increase microtubule organi...

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Autores principales: Cho, Jung-Hyun, Chun, Ho-Young, Lee, Jung Suk, Lee, Jee-Hyun, Cheong, Kyu Jin, Jung, Youn-Sang, Woo, Tae-Gyun, Yoon, Min-Ho, Oh, Ah-Young, Kang, So-Mi, Lee, Chunghui, Sun, Hokeun, Hwang, Jihwan, Song, Gyu-Yong, Park, Bum-Joon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5085216/
https://www.ncbi.nlm.nih.gov/pubmed/27147573
http://dx.doi.org/10.18632/oncotarget.9059
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author Cho, Jung-Hyun
Chun, Ho-Young
Lee, Jung Suk
Lee, Jee-Hyun
Cheong, Kyu Jin
Jung, Youn-Sang
Woo, Tae-Gyun
Yoon, Min-Ho
Oh, Ah-Young
Kang, So-Mi
Lee, Chunghui
Sun, Hokeun
Hwang, Jihwan
Song, Gyu-Yong
Park, Bum-Joon
author_facet Cho, Jung-Hyun
Chun, Ho-Young
Lee, Jung Suk
Lee, Jee-Hyun
Cheong, Kyu Jin
Jung, Youn-Sang
Woo, Tae-Gyun
Yoon, Min-Ho
Oh, Ah-Young
Kang, So-Mi
Lee, Chunghui
Sun, Hokeun
Hwang, Jihwan
Song, Gyu-Yong
Park, Bum-Joon
author_sort Cho, Jung-Hyun
collection PubMed
description Stress has been suggested as one of important cause of human cancer without molecular biological evidence. Thus, we test the effect of stress-related hormones on cell viability and mitotic fidelity. Similarly to estrogen, stress hormone cortisol and its relative cortisone increase microtubule organizing center (MTOC) number through elevated expression of γ-tubulin and provide the Taxol resistance to human cancer cell lines. However, these effects are achieved by glucocorticoid hormone receptor (GR) but not by estrogen receptor (ER). Since ginsenosides possess steroid-like structure, we hypothesized that it would block the stress or estrogen-induced MTOC amplification and Taxol resistance. Among tested chemicals, rare ginsenoside, CSH1 (Rg6) shows obvious effect on inhibition of MTOC amplification, γ-tubulin induction and Taxol resistance. Comparing to Fulvestant (FST), ER-α specific inhibitor, this chemical can block the cortisol/cortisone-induced MTOC deregulation as well as ER-α signaling. Our results suggest that stress hormone induced tumorigenesis would be achieved by MTOC amplification, and CSH1 would be useful for prevention of stress-hormone or steroid hormone-induced chromosomal instability.
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spelling pubmed-50852162016-10-31 Prevention effect of rare ginsenosides against stress-hormone induced MTOC amplification Cho, Jung-Hyun Chun, Ho-Young Lee, Jung Suk Lee, Jee-Hyun Cheong, Kyu Jin Jung, Youn-Sang Woo, Tae-Gyun Yoon, Min-Ho Oh, Ah-Young Kang, So-Mi Lee, Chunghui Sun, Hokeun Hwang, Jihwan Song, Gyu-Yong Park, Bum-Joon Oncotarget Research Paper Stress has been suggested as one of important cause of human cancer without molecular biological evidence. Thus, we test the effect of stress-related hormones on cell viability and mitotic fidelity. Similarly to estrogen, stress hormone cortisol and its relative cortisone increase microtubule organizing center (MTOC) number through elevated expression of γ-tubulin and provide the Taxol resistance to human cancer cell lines. However, these effects are achieved by glucocorticoid hormone receptor (GR) but not by estrogen receptor (ER). Since ginsenosides possess steroid-like structure, we hypothesized that it would block the stress or estrogen-induced MTOC amplification and Taxol resistance. Among tested chemicals, rare ginsenoside, CSH1 (Rg6) shows obvious effect on inhibition of MTOC amplification, γ-tubulin induction and Taxol resistance. Comparing to Fulvestant (FST), ER-α specific inhibitor, this chemical can block the cortisol/cortisone-induced MTOC deregulation as well as ER-α signaling. Our results suggest that stress hormone induced tumorigenesis would be achieved by MTOC amplification, and CSH1 would be useful for prevention of stress-hormone or steroid hormone-induced chromosomal instability. Impact Journals LLC 2016-04-27 /pmc/articles/PMC5085216/ /pubmed/27147573 http://dx.doi.org/10.18632/oncotarget.9059 Text en Copyright: © 2016 Cho et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Cho, Jung-Hyun
Chun, Ho-Young
Lee, Jung Suk
Lee, Jee-Hyun
Cheong, Kyu Jin
Jung, Youn-Sang
Woo, Tae-Gyun
Yoon, Min-Ho
Oh, Ah-Young
Kang, So-Mi
Lee, Chunghui
Sun, Hokeun
Hwang, Jihwan
Song, Gyu-Yong
Park, Bum-Joon
Prevention effect of rare ginsenosides against stress-hormone induced MTOC amplification
title Prevention effect of rare ginsenosides against stress-hormone induced MTOC amplification
title_full Prevention effect of rare ginsenosides against stress-hormone induced MTOC amplification
title_fullStr Prevention effect of rare ginsenosides against stress-hormone induced MTOC amplification
title_full_unstemmed Prevention effect of rare ginsenosides against stress-hormone induced MTOC amplification
title_short Prevention effect of rare ginsenosides against stress-hormone induced MTOC amplification
title_sort prevention effect of rare ginsenosides against stress-hormone induced mtoc amplification
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5085216/
https://www.ncbi.nlm.nih.gov/pubmed/27147573
http://dx.doi.org/10.18632/oncotarget.9059
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