Cargando…

Wnt and the Cancer Niche: Paracrine Interactions with Gastrointestinal Cancer Cells Undergoing Asymmetric Cell Division

Objective: Stem-like cancer cells contribute to cancer initiation and maintenance. Stem cells can self-renew by asymmetric cell division (ACD). ACD with non-random chromosomal cosegregation (ACD-NRCC) is one possible self-renewal mechanism. There is a paucity of evidence supporting ACD-NRCC in human...

Descripción completa

Detalles Bibliográficos
Autores principales: Xin, Hong-Wu, Ambe, Chenwi M., Ray, Satyajit, Kim, Bo-Kyu, Koizumi, Tomotake, Wiegand, Gordon W., Hari, Danielle, Mullinax, John E., Jaiswal, Kshama R., Garfield, Susan H., Stojadinovic, Alexander, Rudloff, Udo, Thorgeirsson, Snorri S., Avital, Itzhak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726705/
https://www.ncbi.nlm.nih.gov/pubmed/23901343
http://dx.doi.org/10.7150/jca.6896
_version_ 1782278694531760128
author Xin, Hong-Wu
Ambe, Chenwi M.
Ray, Satyajit
Kim, Bo-Kyu
Koizumi, Tomotake
Wiegand, Gordon W.
Hari, Danielle
Mullinax, John E.
Jaiswal, Kshama R.
Garfield, Susan H.
Stojadinovic, Alexander
Rudloff, Udo
Thorgeirsson, Snorri S.
Avital, Itzhak
author_facet Xin, Hong-Wu
Ambe, Chenwi M.
Ray, Satyajit
Kim, Bo-Kyu
Koizumi, Tomotake
Wiegand, Gordon W.
Hari, Danielle
Mullinax, John E.
Jaiswal, Kshama R.
Garfield, Susan H.
Stojadinovic, Alexander
Rudloff, Udo
Thorgeirsson, Snorri S.
Avital, Itzhak
author_sort Xin, Hong-Wu
collection PubMed
description Objective: Stem-like cancer cells contribute to cancer initiation and maintenance. Stem cells can self-renew by asymmetric cell division (ACD). ACD with non-random chromosomal cosegregation (ACD-NRCC) is one possible self-renewal mechanism. There is a paucity of evidence supporting ACD-NRCC in human cancer. Our aim was to investigate ACD-NRCC and its potential interactions with the cancer niche (microenvironment) in gastrointestinal cancers. Design: We used DNA double and single labeling approaches with FACS to isolate live cells undergoing ACD-NRCC. Results: Gastrointestinal cancers contain rare subpopulations of cells capable of ACD-NRCC. ACD-NRCC was detected preferentially in subpopulations of cells previously suggested to be stem-like/tumor-initiating cancer cells. ACD-NRCC was independent of cell-to-cell contact, and was regulated by the cancer niche in a heat-sensitive paracrine fashion. Wnt pathway genes and proteins are differentially expressed in cells undergoing ACD-NRCC vs. symmetric cell division. Blocking the Wnt pathway with IWP2 (WNT antagonist) or siRNA-TCF4 resulted in suppression of ACD-NRCC. However, using a Wnt-agonist did not increase the relative proportion of cells undergoing ACD-NRCC. Conclusion: Gastrointestinal cancers contain subpopulations of cells capable of ACD-NRCC. Here we show for the first time that ACD-NRCC can be regulated by the Wnt pathway, and by the cancer niche in a paracrine fashion. However, whether ACD-NRCC is exclusively associated with stem-like cancer cells remains to be determined. Further study of these findings might generate novel insights into stem cell and cancer biology. Targeting the mechanism of ACD-NRCC might engender novel approaches for cancer therapy.
format Online
Article
Text
id pubmed-3726705
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-37267052013-07-30 Wnt and the Cancer Niche: Paracrine Interactions with Gastrointestinal Cancer Cells Undergoing Asymmetric Cell Division Xin, Hong-Wu Ambe, Chenwi M. Ray, Satyajit Kim, Bo-Kyu Koizumi, Tomotake Wiegand, Gordon W. Hari, Danielle Mullinax, John E. Jaiswal, Kshama R. Garfield, Susan H. Stojadinovic, Alexander Rudloff, Udo Thorgeirsson, Snorri S. Avital, Itzhak J Cancer Research Paper Objective: Stem-like cancer cells contribute to cancer initiation and maintenance. Stem cells can self-renew by asymmetric cell division (ACD). ACD with non-random chromosomal cosegregation (ACD-NRCC) is one possible self-renewal mechanism. There is a paucity of evidence supporting ACD-NRCC in human cancer. Our aim was to investigate ACD-NRCC and its potential interactions with the cancer niche (microenvironment) in gastrointestinal cancers. Design: We used DNA double and single labeling approaches with FACS to isolate live cells undergoing ACD-NRCC. Results: Gastrointestinal cancers contain rare subpopulations of cells capable of ACD-NRCC. ACD-NRCC was detected preferentially in subpopulations of cells previously suggested to be stem-like/tumor-initiating cancer cells. ACD-NRCC was independent of cell-to-cell contact, and was regulated by the cancer niche in a heat-sensitive paracrine fashion. Wnt pathway genes and proteins are differentially expressed in cells undergoing ACD-NRCC vs. symmetric cell division. Blocking the Wnt pathway with IWP2 (WNT antagonist) or siRNA-TCF4 resulted in suppression of ACD-NRCC. However, using a Wnt-agonist did not increase the relative proportion of cells undergoing ACD-NRCC. Conclusion: Gastrointestinal cancers contain subpopulations of cells capable of ACD-NRCC. Here we show for the first time that ACD-NRCC can be regulated by the Wnt pathway, and by the cancer niche in a paracrine fashion. However, whether ACD-NRCC is exclusively associated with stem-like cancer cells remains to be determined. Further study of these findings might generate novel insights into stem cell and cancer biology. Targeting the mechanism of ACD-NRCC might engender novel approaches for cancer therapy. Ivyspring International Publisher 2013-07-02 /pmc/articles/PMC3726705/ /pubmed/23901343 http://dx.doi.org/10.7150/jca.6896 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Xin, Hong-Wu
Ambe, Chenwi M.
Ray, Satyajit
Kim, Bo-Kyu
Koizumi, Tomotake
Wiegand, Gordon W.
Hari, Danielle
Mullinax, John E.
Jaiswal, Kshama R.
Garfield, Susan H.
Stojadinovic, Alexander
Rudloff, Udo
Thorgeirsson, Snorri S.
Avital, Itzhak
Wnt and the Cancer Niche: Paracrine Interactions with Gastrointestinal Cancer Cells Undergoing Asymmetric Cell Division
title Wnt and the Cancer Niche: Paracrine Interactions with Gastrointestinal Cancer Cells Undergoing Asymmetric Cell Division
title_full Wnt and the Cancer Niche: Paracrine Interactions with Gastrointestinal Cancer Cells Undergoing Asymmetric Cell Division
title_fullStr Wnt and the Cancer Niche: Paracrine Interactions with Gastrointestinal Cancer Cells Undergoing Asymmetric Cell Division
title_full_unstemmed Wnt and the Cancer Niche: Paracrine Interactions with Gastrointestinal Cancer Cells Undergoing Asymmetric Cell Division
title_short Wnt and the Cancer Niche: Paracrine Interactions with Gastrointestinal Cancer Cells Undergoing Asymmetric Cell Division
title_sort wnt and the cancer niche: paracrine interactions with gastrointestinal cancer cells undergoing asymmetric cell division
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726705/
https://www.ncbi.nlm.nih.gov/pubmed/23901343
http://dx.doi.org/10.7150/jca.6896
work_keys_str_mv AT xinhongwu wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT ambechenwim wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT raysatyajit wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT kimbokyu wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT koizumitomotake wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT wiegandgordonw wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT haridanielle wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT mullinaxjohne wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT jaiswalkshamar wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT garfieldsusanh wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT stojadinovicalexander wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT rudloffudo wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT thorgeirssonsnorris wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision
AT avitalitzhak wntandthecancernicheparacrineinteractionswithgastrointestinalcancercellsundergoingasymmetriccelldivision