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Down-Regulation of NDRG1 Promotes Migration of Cancer Cells during Reoxygenation

One characteristic of tumor microenvironment is oxygen fluctuation, which results from hyper-proliferation and abnormal metabolism of tumor cells as well as disorganized neo-vasculature. Reoxygenation of tumors can induce oxidative stress, which leads to DNA damage and genomic instability. Although...

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Autores principales: Lai, Liang-Chuan, Su, Yi-Yu, Chen, Kuo-Chih, Tsai, Mong-Hsun, Sher, Yuh-Pyng, Lu, Tzu-Pin, Lee, Chien-Yueh, Chuang, Eric Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3166165/
https://www.ncbi.nlm.nih.gov/pubmed/21912630
http://dx.doi.org/10.1371/journal.pone.0024375
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author Lai, Liang-Chuan
Su, Yi-Yu
Chen, Kuo-Chih
Tsai, Mong-Hsun
Sher, Yuh-Pyng
Lu, Tzu-Pin
Lee, Chien-Yueh
Chuang, Eric Y.
author_facet Lai, Liang-Chuan
Su, Yi-Yu
Chen, Kuo-Chih
Tsai, Mong-Hsun
Sher, Yuh-Pyng
Lu, Tzu-Pin
Lee, Chien-Yueh
Chuang, Eric Y.
author_sort Lai, Liang-Chuan
collection PubMed
description One characteristic of tumor microenvironment is oxygen fluctuation, which results from hyper-proliferation and abnormal metabolism of tumor cells as well as disorganized neo-vasculature. Reoxygenation of tumors can induce oxidative stress, which leads to DNA damage and genomic instability. Although the cellular responses to hypoxia are well known, little is known about the dynamic response upon reoxygenation. In order to investigate the transcriptional responses of tumor adaptation to reoxygenation, breast cancer MCF-7 cells were cultured under 0.5% oxygen for 24 h followed by 24 h of reoxygenation in normoxia. Cells were harvested at 0, 1, 4, 8, 12, and 24 h during reoxygenation. The transcriptional profile of MCF-7 cells upon reoxygenation was examined using Illumina Human-6 v3 BeadChips. We identified 127 differentially expressed genes, of which 53.1% were up-regulated and 46.9% were down-regulated upon reoxygenation. Pathway analysis revealed that the HIF-1-alpha transcription factor network and validated targets of C-MYC transcriptional activation were significantly enriched in these differentially expressed genes. Among these genes, a subset of interest genes was further validated by quantitative reverse-transcription PCR. In particular, human N-MYC down-regulated gene 1 (NDRG1) was highly suppressed upon reoxygenation. NDRG1 is associated with a variety of stress and cell growth-regulatory conditions. To determine whether NDRG1 plays a role in reoxygenation, NDRG1 protein was overexpressed in MCF-7 cells. Upon reoxygenation, overexpression of NDRG1 significantly inhibited cell migration. Our results revealed the dynamic nature of gene expression in MCF-7 cells upon reoxygenation and demonstrated that NDRG1 is involved in tumor adaptation to reoxygenation.
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spelling pubmed-31661652011-09-12 Down-Regulation of NDRG1 Promotes Migration of Cancer Cells during Reoxygenation Lai, Liang-Chuan Su, Yi-Yu Chen, Kuo-Chih Tsai, Mong-Hsun Sher, Yuh-Pyng Lu, Tzu-Pin Lee, Chien-Yueh Chuang, Eric Y. PLoS One Research Article One characteristic of tumor microenvironment is oxygen fluctuation, which results from hyper-proliferation and abnormal metabolism of tumor cells as well as disorganized neo-vasculature. Reoxygenation of tumors can induce oxidative stress, which leads to DNA damage and genomic instability. Although the cellular responses to hypoxia are well known, little is known about the dynamic response upon reoxygenation. In order to investigate the transcriptional responses of tumor adaptation to reoxygenation, breast cancer MCF-7 cells were cultured under 0.5% oxygen for 24 h followed by 24 h of reoxygenation in normoxia. Cells were harvested at 0, 1, 4, 8, 12, and 24 h during reoxygenation. The transcriptional profile of MCF-7 cells upon reoxygenation was examined using Illumina Human-6 v3 BeadChips. We identified 127 differentially expressed genes, of which 53.1% were up-regulated and 46.9% were down-regulated upon reoxygenation. Pathway analysis revealed that the HIF-1-alpha transcription factor network and validated targets of C-MYC transcriptional activation were significantly enriched in these differentially expressed genes. Among these genes, a subset of interest genes was further validated by quantitative reverse-transcription PCR. In particular, human N-MYC down-regulated gene 1 (NDRG1) was highly suppressed upon reoxygenation. NDRG1 is associated with a variety of stress and cell growth-regulatory conditions. To determine whether NDRG1 plays a role in reoxygenation, NDRG1 protein was overexpressed in MCF-7 cells. Upon reoxygenation, overexpression of NDRG1 significantly inhibited cell migration. Our results revealed the dynamic nature of gene expression in MCF-7 cells upon reoxygenation and demonstrated that NDRG1 is involved in tumor adaptation to reoxygenation. Public Library of Science 2011-08-30 /pmc/articles/PMC3166165/ /pubmed/21912630 http://dx.doi.org/10.1371/journal.pone.0024375 Text en Lai et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Lai, Liang-Chuan
Su, Yi-Yu
Chen, Kuo-Chih
Tsai, Mong-Hsun
Sher, Yuh-Pyng
Lu, Tzu-Pin
Lee, Chien-Yueh
Chuang, Eric Y.
Down-Regulation of NDRG1 Promotes Migration of Cancer Cells during Reoxygenation
title Down-Regulation of NDRG1 Promotes Migration of Cancer Cells during Reoxygenation
title_full Down-Regulation of NDRG1 Promotes Migration of Cancer Cells during Reoxygenation
title_fullStr Down-Regulation of NDRG1 Promotes Migration of Cancer Cells during Reoxygenation
title_full_unstemmed Down-Regulation of NDRG1 Promotes Migration of Cancer Cells during Reoxygenation
title_short Down-Regulation of NDRG1 Promotes Migration of Cancer Cells during Reoxygenation
title_sort down-regulation of ndrg1 promotes migration of cancer cells during reoxygenation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3166165/
https://www.ncbi.nlm.nih.gov/pubmed/21912630
http://dx.doi.org/10.1371/journal.pone.0024375
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