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Mitochondrial fission regulator 2 (MTFR2) promotes growth, migration, invasion and tumour progression in breast cancer cells

Introduction: Mitochondrial fission regulator 2 (MTFR2) belongs to the MTFR family, and 2 isoforms of MTFR2 are produced by alternative splicing. The role of MTFR2 in breast cancer (BC) remains unknown. Results: MTFR2 was upregulated in BC tissues and was strongly associated with tumor characteristi...

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Autores principales: Lu, Guanming, Lai, Yuanhui, Wang, Tiantian, Lin, Weihao, Lu, Jinlan, Ma, Yanfei, Chen, Yongcheng, Ma, Haiqing, Liu, Ruilei, Li, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6914410/
https://www.ncbi.nlm.nih.gov/pubmed/31740625
http://dx.doi.org/10.18632/aging.102442
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author Lu, Guanming
Lai, Yuanhui,
Wang, Tiantian
Lin, Weihao
Lu, Jinlan
Ma, Yanfei
Chen, Yongcheng
Ma, Haiqing
Liu, Ruilei
Li, Jie
author_facet Lu, Guanming
Lai, Yuanhui,
Wang, Tiantian
Lin, Weihao
Lu, Jinlan
Ma, Yanfei
Chen, Yongcheng
Ma, Haiqing
Liu, Ruilei
Li, Jie
author_sort Lu, Guanming
collection PubMed
description Introduction: Mitochondrial fission regulator 2 (MTFR2) belongs to the MTFR family, and 2 isoforms of MTFR2 are produced by alternative splicing. The role of MTFR2 in breast cancer (BC) remains unknown. Results: MTFR2 was upregulated in BC tissues and was strongly associated with tumor characteristics. Moreover, Kaplan-Meier and Cox proportional hazards analyses indicated that high MTFR2 expression was related to poor overall survival. In addition, the capacity for migration and invasion decreased in two BC cell lines after knockdown of MTFR2. The epithelial-mesenchymal transition pathway was inhibited in MTFR2-silenced cells. MTFR2 can switch glucose metabolism from OXPHS to glycolysis in a HIF1α- and HIF2α-dependent manner. Conclusion: Taken together, our results indicate that increased expression of MTFR2 is associated with tumour progression in breast cancer cells through switching glucose metabolism from OXPHS to glycolysis in a HIF1α- and HIF2α-dependent manner. Materials and methods: We obtained data from The Cancer Genome Atlas (TCGA) and the Gene Expression Omnibus (GEO) to analyse MTFR2 expression in BC. The prognostic value of MTFR2 expression was assessed using the Kaplan-Meier method. The biological influence of MTFR2 on BC cell lines was studied using proliferation, Transwell migration, invasion and mitochondrial function assays.
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spelling pubmed-69144102019-12-19 Mitochondrial fission regulator 2 (MTFR2) promotes growth, migration, invasion and tumour progression in breast cancer cells Lu, Guanming Lai, Yuanhui, Wang, Tiantian Lin, Weihao Lu, Jinlan Ma, Yanfei Chen, Yongcheng Ma, Haiqing Liu, Ruilei Li, Jie Aging (Albany NY) Research Paper Introduction: Mitochondrial fission regulator 2 (MTFR2) belongs to the MTFR family, and 2 isoforms of MTFR2 are produced by alternative splicing. The role of MTFR2 in breast cancer (BC) remains unknown. Results: MTFR2 was upregulated in BC tissues and was strongly associated with tumor characteristics. Moreover, Kaplan-Meier and Cox proportional hazards analyses indicated that high MTFR2 expression was related to poor overall survival. In addition, the capacity for migration and invasion decreased in two BC cell lines after knockdown of MTFR2. The epithelial-mesenchymal transition pathway was inhibited in MTFR2-silenced cells. MTFR2 can switch glucose metabolism from OXPHS to glycolysis in a HIF1α- and HIF2α-dependent manner. Conclusion: Taken together, our results indicate that increased expression of MTFR2 is associated with tumour progression in breast cancer cells through switching glucose metabolism from OXPHS to glycolysis in a HIF1α- and HIF2α-dependent manner. Materials and methods: We obtained data from The Cancer Genome Atlas (TCGA) and the Gene Expression Omnibus (GEO) to analyse MTFR2 expression in BC. The prognostic value of MTFR2 expression was assessed using the Kaplan-Meier method. The biological influence of MTFR2 on BC cell lines was studied using proliferation, Transwell migration, invasion and mitochondrial function assays. Impact Journals 2019-11-18 /pmc/articles/PMC6914410/ /pubmed/31740625 http://dx.doi.org/10.18632/aging.102442 Text en Copyright © 2019 Lu et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Lu, Guanming
Lai, Yuanhui,
Wang, Tiantian
Lin, Weihao
Lu, Jinlan
Ma, Yanfei
Chen, Yongcheng
Ma, Haiqing
Liu, Ruilei
Li, Jie
Mitochondrial fission regulator 2 (MTFR2) promotes growth, migration, invasion and tumour progression in breast cancer cells
title Mitochondrial fission regulator 2 (MTFR2) promotes growth, migration, invasion and tumour progression in breast cancer cells
title_full Mitochondrial fission regulator 2 (MTFR2) promotes growth, migration, invasion and tumour progression in breast cancer cells
title_fullStr Mitochondrial fission regulator 2 (MTFR2) promotes growth, migration, invasion and tumour progression in breast cancer cells
title_full_unstemmed Mitochondrial fission regulator 2 (MTFR2) promotes growth, migration, invasion and tumour progression in breast cancer cells
title_short Mitochondrial fission regulator 2 (MTFR2) promotes growth, migration, invasion and tumour progression in breast cancer cells
title_sort mitochondrial fission regulator 2 (mtfr2) promotes growth, migration, invasion and tumour progression in breast cancer cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6914410/
https://www.ncbi.nlm.nih.gov/pubmed/31740625
http://dx.doi.org/10.18632/aging.102442
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