Cargando…

By activating Fas/ceramide synthase 6/p38 kinase in lipid rafts, Stichoposide D inhibits growth of leukemia xenografts

Stichoposide D (STD) is a marine triterpene glycoside isolated from sea cucumbers. We examined the molecular mechanisms underlying the antitumor activity of STD in human leukemia cells. The role of Fas (CD95), ceramide synthase 6 (CerS6) and p38 kinase during STD-induced apoptosis was examined in hu...

Descripción completa

Detalles Bibliográficos
Autores principales: Yun, Seong-Hoon, Park, Eun-Seon, Shin, Sung-Won, Ju, Mi-Ha, Han, Jin-Yeong, Jeong, Jin-Sook, Kim, Sung-Hyun, Stonik, Valentin A., Kwak, Jong-Young, Park, Joo-In
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4695011/
https://www.ncbi.nlm.nih.gov/pubmed/26318294
_version_ 1782407575454613504
author Yun, Seong-Hoon
Park, Eun-Seon
Shin, Sung-Won
Ju, Mi-Ha
Han, Jin-Yeong
Jeong, Jin-Sook
Kim, Sung-Hyun
Stonik, Valentin A.
Kwak, Jong-Young
Park, Joo-In
author_facet Yun, Seong-Hoon
Park, Eun-Seon
Shin, Sung-Won
Ju, Mi-Ha
Han, Jin-Yeong
Jeong, Jin-Sook
Kim, Sung-Hyun
Stonik, Valentin A.
Kwak, Jong-Young
Park, Joo-In
author_sort Yun, Seong-Hoon
collection PubMed
description Stichoposide D (STD) is a marine triterpene glycoside isolated from sea cucumbers. We examined the molecular mechanisms underlying the antitumor activity of STD in human leukemia cells. The role of Fas (CD95), ceramide synthase 6 (CerS6) and p38 kinase during STD-induced apoptosis was examined in human leukemia cells. In addition, the antitumor effects of STD in K562 and HL-60 leukemia xenograft models were investigated. We found that STD induces Fas translocation to lipid rafts, and thus mediates cell apoptosis. We also observed the activation of CerS6 and p38 kinase during STD-induced apoptosis. The use of methyl-β-cyclodextrin and nystatin to disrupt lipid rafts prevents the clustering of Fas and the activation of CerS6 and p38 kinase, and also inhibits STD-induced apoptosis. Specific inhibition by Fas, CerS6, and p38 kinase siRNA transfection partially blocked STD-induced apoptosis. In addition, STD has antitumor activity through the activation of CerS6 and p38 kinase without displaying any toxicity in HL-60 and K562 xenograft models. We observed that the anti-tumor effect of STD is partially prevented in CerS6 shRNA-silenced xenograft models. We first report that Fas/CerS6/p38 kinase activation in lipid rafts by STD is involved in its anti-leukemic activity. We also established that STD is able to enhance the chemosensitivity of K562 cells to etoposide or Ara-C. These data suggest that STD may be used alone or in combination with other chemotherapeutic agents to treat leukemia.
format Online
Article
Text
id pubmed-4695011
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-46950112016-01-20 By activating Fas/ceramide synthase 6/p38 kinase in lipid rafts, Stichoposide D inhibits growth of leukemia xenografts Yun, Seong-Hoon Park, Eun-Seon Shin, Sung-Won Ju, Mi-Ha Han, Jin-Yeong Jeong, Jin-Sook Kim, Sung-Hyun Stonik, Valentin A. Kwak, Jong-Young Park, Joo-In Oncotarget Research Paper Stichoposide D (STD) is a marine triterpene glycoside isolated from sea cucumbers. We examined the molecular mechanisms underlying the antitumor activity of STD in human leukemia cells. The role of Fas (CD95), ceramide synthase 6 (CerS6) and p38 kinase during STD-induced apoptosis was examined in human leukemia cells. In addition, the antitumor effects of STD in K562 and HL-60 leukemia xenograft models were investigated. We found that STD induces Fas translocation to lipid rafts, and thus mediates cell apoptosis. We also observed the activation of CerS6 and p38 kinase during STD-induced apoptosis. The use of methyl-β-cyclodextrin and nystatin to disrupt lipid rafts prevents the clustering of Fas and the activation of CerS6 and p38 kinase, and also inhibits STD-induced apoptosis. Specific inhibition by Fas, CerS6, and p38 kinase siRNA transfection partially blocked STD-induced apoptosis. In addition, STD has antitumor activity through the activation of CerS6 and p38 kinase without displaying any toxicity in HL-60 and K562 xenograft models. We observed that the anti-tumor effect of STD is partially prevented in CerS6 shRNA-silenced xenograft models. We first report that Fas/CerS6/p38 kinase activation in lipid rafts by STD is involved in its anti-leukemic activity. We also established that STD is able to enhance the chemosensitivity of K562 cells to etoposide or Ara-C. These data suggest that STD may be used alone or in combination with other chemotherapeutic agents to treat leukemia. Impact Journals LLC 2015-07-30 /pmc/articles/PMC4695011/ /pubmed/26318294 Text en Copyright: © 2015 Yun 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
Yun, Seong-Hoon
Park, Eun-Seon
Shin, Sung-Won
Ju, Mi-Ha
Han, Jin-Yeong
Jeong, Jin-Sook
Kim, Sung-Hyun
Stonik, Valentin A.
Kwak, Jong-Young
Park, Joo-In
By activating Fas/ceramide synthase 6/p38 kinase in lipid rafts, Stichoposide D inhibits growth of leukemia xenografts
title By activating Fas/ceramide synthase 6/p38 kinase in lipid rafts, Stichoposide D inhibits growth of leukemia xenografts
title_full By activating Fas/ceramide synthase 6/p38 kinase in lipid rafts, Stichoposide D inhibits growth of leukemia xenografts
title_fullStr By activating Fas/ceramide synthase 6/p38 kinase in lipid rafts, Stichoposide D inhibits growth of leukemia xenografts
title_full_unstemmed By activating Fas/ceramide synthase 6/p38 kinase in lipid rafts, Stichoposide D inhibits growth of leukemia xenografts
title_short By activating Fas/ceramide synthase 6/p38 kinase in lipid rafts, Stichoposide D inhibits growth of leukemia xenografts
title_sort by activating fas/ceramide synthase 6/p38 kinase in lipid rafts, stichoposide d inhibits growth of leukemia xenografts
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4695011/
https://www.ncbi.nlm.nih.gov/pubmed/26318294
work_keys_str_mv AT yunseonghoon byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT parkeunseon byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT shinsungwon byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT jumiha byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT hanjinyeong byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT jeongjinsook byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT kimsunghyun byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT stonikvalentina byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT kwakjongyoung byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts
AT parkjooin byactivatingfasceramidesynthase6p38kinaseinlipidraftsstichoposidedinhibitsgrowthofleukemiaxenografts