Cargando…

Quinomycin A targets Notch signaling pathway in pancreatic cancer stem cells

Cancer stem cells (CSCs) appear to explain many aspects of the neoplastic evolution of tumors and likely account for enhanced therapeutic resistance following treatment. Dysregulated Notch signaling, which affects CSCs plays an important role in pancreatic cancer progression. We have determined the...

Descripción completa

Detalles Bibliográficos
Autores principales: Ponnurangam, Sivapriya, Dandawate, Prasad R., Dhar, Animesh, Tawfik, Ossama W., Parab, Rajashri R., Mishra, Prabhu Dutt, Ranadive, Prafull, Sharma, Rajiv, Mahajan, Girish, Umar, Shahid, Weir, Scott J., Sugumar, Aravind, Jensen, Roy A., Padhye, Subhash B., Balakrishnan, Arun, Anant, Shrikant, Subramaniam, Dharmalingam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4823101/
https://www.ncbi.nlm.nih.gov/pubmed/26673007
http://dx.doi.org/10.18632/oncotarget.6560
_version_ 1782425858924871680
author Ponnurangam, Sivapriya
Dandawate, Prasad R.
Dhar, Animesh
Tawfik, Ossama W.
Parab, Rajashri R.
Mishra, Prabhu Dutt
Ranadive, Prafull
Sharma, Rajiv
Mahajan, Girish
Umar, Shahid
Weir, Scott J.
Sugumar, Aravind
Jensen, Roy A.
Padhye, Subhash B.
Balakrishnan, Arun
Anant, Shrikant
Subramaniam, Dharmalingam
author_facet Ponnurangam, Sivapriya
Dandawate, Prasad R.
Dhar, Animesh
Tawfik, Ossama W.
Parab, Rajashri R.
Mishra, Prabhu Dutt
Ranadive, Prafull
Sharma, Rajiv
Mahajan, Girish
Umar, Shahid
Weir, Scott J.
Sugumar, Aravind
Jensen, Roy A.
Padhye, Subhash B.
Balakrishnan, Arun
Anant, Shrikant
Subramaniam, Dharmalingam
author_sort Ponnurangam, Sivapriya
collection PubMed
description Cancer stem cells (CSCs) appear to explain many aspects of the neoplastic evolution of tumors and likely account for enhanced therapeutic resistance following treatment. Dysregulated Notch signaling, which affects CSCs plays an important role in pancreatic cancer progression. We have determined the ability of Quinomycin to inhibit CSCs and the Notch signaling pathway. Quinomycin treatment resulted in significant inhibition of proliferation and colony formation in pancreatic cancer cell lines, but not in normal pancreatic epithelial cells. Moreover, Quinomycin affected pancreatosphere formation. The compound also decreased the expression of CSC marker proteins DCLK1, CD44, CD24 and EPCAM. In addition, flow cytometry studies demonstrated that Quinomycin reduced the number of DCLK1+ cells. Furthermore, levels of Notch 1–4 receptors, their ligands Jagged1, Jagged2, DLL1, DLL3, DLL4 and the downstream target protein Hes-1 were reduced. The γ-secretase complex proteins, Presenilin 1, Nicastrin, Pen2, and APH-1, required for Notch activation also exhibited decreased expression. Ectopic expression of the Notch Intracellular Domain (NICD) partially rescued the cells from Quinomycin mediated growth suppression. To determine the effect of Quinomycin on tumor growth in vivo, nude mice carrying tumor xenografts were administered Quinomycin intraperitoneally every day for 21 days. Treatment with the compound significantly inhibited tumor xenograft growth, coupled with significant reduction in the expression of CSC markers and Notch signaling proteins. Together, these data suggest that Quinomycin is a potent inhibitor of pancreatic cancer that targets the stem cells by inhibiting Notch signaling proteins.
format Online
Article
Text
id pubmed-4823101
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-48231012016-05-03 Quinomycin A targets Notch signaling pathway in pancreatic cancer stem cells Ponnurangam, Sivapriya Dandawate, Prasad R. Dhar, Animesh Tawfik, Ossama W. Parab, Rajashri R. Mishra, Prabhu Dutt Ranadive, Prafull Sharma, Rajiv Mahajan, Girish Umar, Shahid Weir, Scott J. Sugumar, Aravind Jensen, Roy A. Padhye, Subhash B. Balakrishnan, Arun Anant, Shrikant Subramaniam, Dharmalingam Oncotarget Research Paper Cancer stem cells (CSCs) appear to explain many aspects of the neoplastic evolution of tumors and likely account for enhanced therapeutic resistance following treatment. Dysregulated Notch signaling, which affects CSCs plays an important role in pancreatic cancer progression. We have determined the ability of Quinomycin to inhibit CSCs and the Notch signaling pathway. Quinomycin treatment resulted in significant inhibition of proliferation and colony formation in pancreatic cancer cell lines, but not in normal pancreatic epithelial cells. Moreover, Quinomycin affected pancreatosphere formation. The compound also decreased the expression of CSC marker proteins DCLK1, CD44, CD24 and EPCAM. In addition, flow cytometry studies demonstrated that Quinomycin reduced the number of DCLK1+ cells. Furthermore, levels of Notch 1–4 receptors, their ligands Jagged1, Jagged2, DLL1, DLL3, DLL4 and the downstream target protein Hes-1 were reduced. The γ-secretase complex proteins, Presenilin 1, Nicastrin, Pen2, and APH-1, required for Notch activation also exhibited decreased expression. Ectopic expression of the Notch Intracellular Domain (NICD) partially rescued the cells from Quinomycin mediated growth suppression. To determine the effect of Quinomycin on tumor growth in vivo, nude mice carrying tumor xenografts were administered Quinomycin intraperitoneally every day for 21 days. Treatment with the compound significantly inhibited tumor xenograft growth, coupled with significant reduction in the expression of CSC markers and Notch signaling proteins. Together, these data suggest that Quinomycin is a potent inhibitor of pancreatic cancer that targets the stem cells by inhibiting Notch signaling proteins. Impact Journals LLC 2015-12-11 /pmc/articles/PMC4823101/ /pubmed/26673007 http://dx.doi.org/10.18632/oncotarget.6560 Text en Copyright: © 2016 Ponnurangam 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
Ponnurangam, Sivapriya
Dandawate, Prasad R.
Dhar, Animesh
Tawfik, Ossama W.
Parab, Rajashri R.
Mishra, Prabhu Dutt
Ranadive, Prafull
Sharma, Rajiv
Mahajan, Girish
Umar, Shahid
Weir, Scott J.
Sugumar, Aravind
Jensen, Roy A.
Padhye, Subhash B.
Balakrishnan, Arun
Anant, Shrikant
Subramaniam, Dharmalingam
Quinomycin A targets Notch signaling pathway in pancreatic cancer stem cells
title Quinomycin A targets Notch signaling pathway in pancreatic cancer stem cells
title_full Quinomycin A targets Notch signaling pathway in pancreatic cancer stem cells
title_fullStr Quinomycin A targets Notch signaling pathway in pancreatic cancer stem cells
title_full_unstemmed Quinomycin A targets Notch signaling pathway in pancreatic cancer stem cells
title_short Quinomycin A targets Notch signaling pathway in pancreatic cancer stem cells
title_sort quinomycin a targets notch signaling pathway in pancreatic cancer stem cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4823101/
https://www.ncbi.nlm.nih.gov/pubmed/26673007
http://dx.doi.org/10.18632/oncotarget.6560
work_keys_str_mv AT ponnurangamsivapriya quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT dandawateprasadr quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT dharanimesh quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT tawfikossamaw quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT parabrajashrir quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT mishraprabhudutt quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT ranadiveprafull quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT sharmarajiv quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT mahajangirish quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT umarshahid quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT weirscottj quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT sugumararavind quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT jensenroya quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT padhyesubhashb quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT balakrishnanarun quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT anantshrikant quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells
AT subramaniamdharmalingam quinomycinatargetsnotchsignalingpathwayinpancreaticcancerstemcells