Evaluation of Gene Expression Data From Cybrids and Tumours Highlights Elevated -Driven Proliferation in Triple-Negative Breast Cancer

Background: Triple-negative breast cancer is an aggressive type of breast cancer with high risk of recurrence. It is still poorly understood and lacks any targeted therapy, which makes it difficult to treat. Thus, it is important to understand the underlying mechanisms and pathways that are dysregul...

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Main Authors: Akanksha Mishra, Maria Bonello, Adam Byron, Simon P Langdon, Andrew H Sims
Format: Article
Language:English
Published: SAGE Publishing 2020-06-01
Series:Breast Cancer: Basic and Clinical Research
Online Access:https://doi.org/10.1177/1178223420934447
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spelling doaj-c841407e1b0c4380957860ec53d91da82020-11-25T03:46:31ZengSAGE PublishingBreast Cancer: Basic and Clinical Research1178-22342020-06-011410.1177/1178223420934447Evaluation of Gene Expression Data From Cybrids and Tumours Highlights Elevated -Driven Proliferation in Triple-Negative Breast CancerAkanksha Mishra0Maria Bonello1Adam Byron2Simon P Langdon3Andrew H Sims4Applied Bioinformatics of Cancer, Cancer Research UK Edinburgh Centre, MRC Institute of Genetics & Molecular Medicine, The University of Edinburgh, Edinburgh, UKDivision of Pathology, The University of Edinburgh, Edinburgh, UKCancer Research UK Edinburgh Centre, MRC Institute of Genetics & Molecular Medicine, The University of Edinburgh, Edinburgh, UKDivision of Pathology, The University of Edinburgh, Edinburgh, UKApplied Bioinformatics of Cancer, Cancer Research UK Edinburgh Centre, MRC Institute of Genetics & Molecular Medicine, The University of Edinburgh, Edinburgh, UKBackground: Triple-negative breast cancer is an aggressive type of breast cancer with high risk of recurrence. It is still poorly understood and lacks any targeted therapy, which makes it difficult to treat. Thus, it is important to understand the underlying mechanisms and pathways that are dysregulated in triple-negative breast cancer. Methods: To investigate the role of mitochondria in triple-negative breast cancer progression, we analysed previously reported gene expression data from triple-negative breast cancer cybrids with SUM-159 as the nuclear donor cell and SUM-159 or A1N4 (c-SUM-159, c-A1N4) as the mitochondrial donor cells and with 143B as the nuclear donor cell and MCF-10A or MDA-MB-231 (c-MCF-10A, c-MDA-MB-231) as the mitochondrial donor cells. The role of potential biomarkers in cell proliferation and migration was examined in SUM-159 and MDA-MB-231 cells using sulforhodamine B and wound healing assays. Results: Rank product analysis of cybrid gene expression data identified 149 genes which were significantly up-regulated in the cybrids with mitochondria from the cancer cell line. Analysis of previously reported breast tumour gene expression datasets confirmed 9 of the 149 genes were amplified, up-regulated, or down-regulated in more than 10% of the patients. The genes included NDRG1, PVT1 , and EXT1 , which are co-located in cytoband 8q24, which is frequently amplified in breast cancer. NDRG1 showed the largest down-regulation in the cybrids with benign mitochondria and was associated with poor prognosis in a breast cancer clinical dataset. Knockdown of NDRG1 expression significantly decreased proliferation of SUM-159 triple-negative breast cancer cells. Conclusions: These results indicate that mitochondria-regulated nuclear gene expression helps breast cancer cells survive and proliferate, consistent with previous work focusing on an Src gene signature which is mitochondria regulated and drives malignancy in breast cancer cybrids. This is the first study to show that mitochondria in triple-negative breast cancer mediate significant up-regulation of a number of genes, and silencing of NDRG1 leads to significant reduction in proliferation.https://doi.org/10.1177/1178223420934447
collection DOAJ
language English
format Article
sources DOAJ
author Akanksha Mishra
Maria Bonello
Adam Byron
Simon P Langdon
Andrew H Sims
spellingShingle Akanksha Mishra
Maria Bonello
Adam Byron
Simon P Langdon
Andrew H Sims
Evaluation of Gene Expression Data From Cybrids and Tumours Highlights Elevated -Driven Proliferation in Triple-Negative Breast Cancer
Breast Cancer: Basic and Clinical Research
author_facet Akanksha Mishra
Maria Bonello
Adam Byron
Simon P Langdon
Andrew H Sims
author_sort Akanksha Mishra
title Evaluation of Gene Expression Data From Cybrids and Tumours Highlights Elevated -Driven Proliferation in Triple-Negative Breast Cancer
title_short Evaluation of Gene Expression Data From Cybrids and Tumours Highlights Elevated -Driven Proliferation in Triple-Negative Breast Cancer
title_full Evaluation of Gene Expression Data From Cybrids and Tumours Highlights Elevated -Driven Proliferation in Triple-Negative Breast Cancer
title_fullStr Evaluation of Gene Expression Data From Cybrids and Tumours Highlights Elevated -Driven Proliferation in Triple-Negative Breast Cancer
title_full_unstemmed Evaluation of Gene Expression Data From Cybrids and Tumours Highlights Elevated -Driven Proliferation in Triple-Negative Breast Cancer
title_sort evaluation of gene expression data from cybrids and tumours highlights elevated -driven proliferation in triple-negative breast cancer
publisher SAGE Publishing
series Breast Cancer: Basic and Clinical Research
issn 1178-2234
publishDate 2020-06-01
description Background: Triple-negative breast cancer is an aggressive type of breast cancer with high risk of recurrence. It is still poorly understood and lacks any targeted therapy, which makes it difficult to treat. Thus, it is important to understand the underlying mechanisms and pathways that are dysregulated in triple-negative breast cancer. Methods: To investigate the role of mitochondria in triple-negative breast cancer progression, we analysed previously reported gene expression data from triple-negative breast cancer cybrids with SUM-159 as the nuclear donor cell and SUM-159 or A1N4 (c-SUM-159, c-A1N4) as the mitochondrial donor cells and with 143B as the nuclear donor cell and MCF-10A or MDA-MB-231 (c-MCF-10A, c-MDA-MB-231) as the mitochondrial donor cells. The role of potential biomarkers in cell proliferation and migration was examined in SUM-159 and MDA-MB-231 cells using sulforhodamine B and wound healing assays. Results: Rank product analysis of cybrid gene expression data identified 149 genes which were significantly up-regulated in the cybrids with mitochondria from the cancer cell line. Analysis of previously reported breast tumour gene expression datasets confirmed 9 of the 149 genes were amplified, up-regulated, or down-regulated in more than 10% of the patients. The genes included NDRG1, PVT1 , and EXT1 , which are co-located in cytoband 8q24, which is frequently amplified in breast cancer. NDRG1 showed the largest down-regulation in the cybrids with benign mitochondria and was associated with poor prognosis in a breast cancer clinical dataset. Knockdown of NDRG1 expression significantly decreased proliferation of SUM-159 triple-negative breast cancer cells. Conclusions: These results indicate that mitochondria-regulated nuclear gene expression helps breast cancer cells survive and proliferate, consistent with previous work focusing on an Src gene signature which is mitochondria regulated and drives malignancy in breast cancer cybrids. This is the first study to show that mitochondria in triple-negative breast cancer mediate significant up-regulation of a number of genes, and silencing of NDRG1 leads to significant reduction in proliferation.
url https://doi.org/10.1177/1178223420934447
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