Cargando…

HIF-1-induced mitochondrial ribosome protein L52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia

Background: Hypoxia is a hallmark of the physical microenvironment of solid tumors. As a key factor that regulates tumor development and progression, hypoxia can reprogram the expression of multiple genes, whose biological function and molecular mechanism in cancer remain largely unclear. The mitoch...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Xinyan, Wang, Mengshen, Li, Su, Chen, Yuqiong, Wang, Mozhi, Wu, Zhonghua, Sun, Xiangyu, Yao, Litong, Dong, Haoran, Song, Yongxi, Xu, Yingying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8210597/
https://www.ncbi.nlm.nih.gov/pubmed/34158854
http://dx.doi.org/10.7150/thno.57804
_version_ 1783709343833653248
author Li, Xinyan
Wang, Mengshen
Li, Su
Chen, Yuqiong
Wang, Mozhi
Wu, Zhonghua
Sun, Xiangyu
Yao, Litong
Dong, Haoran
Song, Yongxi
Xu, Yingying
author_facet Li, Xinyan
Wang, Mengshen
Li, Su
Chen, Yuqiong
Wang, Mozhi
Wu, Zhonghua
Sun, Xiangyu
Yao, Litong
Dong, Haoran
Song, Yongxi
Xu, Yingying
author_sort Li, Xinyan
collection PubMed
description Background: Hypoxia is a hallmark of the physical microenvironment of solid tumors. As a key factor that regulates tumor development and progression, hypoxia can reprogram the expression of multiple genes, whose biological function and molecular mechanism in cancer remain largely unclear. The mitochondrial ribosome protein family consists of nuclear-encoded mitochondrial proteins that are responsible for protein synthesis in the mitochondria. Methods: A high-throughput RNA sequencing assay was carried out to identify differentially expressed mRNAs between breast cancer tissues and adjacent normal tissues as well as breast tumors with metastasis and those without metastasis. Our clinical samples and TCGA database were analyzed to observe the clinical value of mitochondrial ribosome protein L52 (MRPL52) in human breast cancer. Potent hypoxia response elements in the promoter region of MRPL52 were identified and validated by chromatin immunoprecipitation and luciferase reporter assays. Functional experiments were performed using breast cancer cell lines with MRPL52 ectopic expression and knockdown cultured in a 20% or 1% O(2) environment. Results: MRPL52 expression was upregulated in human breast cancer and was significantly associated with aggressive clinicopathological characteristics and a higher metastatic risk of breast cancer patients. We found that the overexpression of MRPL52 in breast cancer is induced by hypoxia-inducible factor-1 in response to hypoxic exposure. The role of MRPL52 in suppressing apoptosis and promoting migration and invasion of hypoxic breast cancer cells was demonstrated by our experimental evidence. Mechanistically, MRPL52 promoted PTEN-induced putative kinase 1 /Parkin-dependent mitophagy to remove oxidatively damaged mitochondria and prevent uncontrolled reactive oxygen species (ROS) generation, thus repressing activation of the mitochondrial apoptotic cascade. Additionally, MRPL52 augmented epithelial-mesenchymal transition, migration and invasion of hypoxic breast cancer cells by activating the ROS-Notch1-Snail signaling pathway. Benefited from this bidirectional regulatory mechanism, MRPL52 is responsible for maintaining ROS levels in a window that can induce tumorigenic signal transduction without causing cytotoxicity in hypoxic breast cancer cells. Conclusions: This work elucidates the molecular mechanism by which MRPL52 mediates hypoxia-induced apoptotic resistance and metastatic initiation of breast cancer, and provides new insights into the interplay between cancer and the tumor microenvironment.
format Online
Article
Text
id pubmed-8210597
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-82105972021-06-21 HIF-1-induced mitochondrial ribosome protein L52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia Li, Xinyan Wang, Mengshen Li, Su Chen, Yuqiong Wang, Mozhi Wu, Zhonghua Sun, Xiangyu Yao, Litong Dong, Haoran Song, Yongxi Xu, Yingying Theranostics Research Paper Background: Hypoxia is a hallmark of the physical microenvironment of solid tumors. As a key factor that regulates tumor development and progression, hypoxia can reprogram the expression of multiple genes, whose biological function and molecular mechanism in cancer remain largely unclear. The mitochondrial ribosome protein family consists of nuclear-encoded mitochondrial proteins that are responsible for protein synthesis in the mitochondria. Methods: A high-throughput RNA sequencing assay was carried out to identify differentially expressed mRNAs between breast cancer tissues and adjacent normal tissues as well as breast tumors with metastasis and those without metastasis. Our clinical samples and TCGA database were analyzed to observe the clinical value of mitochondrial ribosome protein L52 (MRPL52) in human breast cancer. Potent hypoxia response elements in the promoter region of MRPL52 were identified and validated by chromatin immunoprecipitation and luciferase reporter assays. Functional experiments were performed using breast cancer cell lines with MRPL52 ectopic expression and knockdown cultured in a 20% or 1% O(2) environment. Results: MRPL52 expression was upregulated in human breast cancer and was significantly associated with aggressive clinicopathological characteristics and a higher metastatic risk of breast cancer patients. We found that the overexpression of MRPL52 in breast cancer is induced by hypoxia-inducible factor-1 in response to hypoxic exposure. The role of MRPL52 in suppressing apoptosis and promoting migration and invasion of hypoxic breast cancer cells was demonstrated by our experimental evidence. Mechanistically, MRPL52 promoted PTEN-induced putative kinase 1 /Parkin-dependent mitophagy to remove oxidatively damaged mitochondria and prevent uncontrolled reactive oxygen species (ROS) generation, thus repressing activation of the mitochondrial apoptotic cascade. Additionally, MRPL52 augmented epithelial-mesenchymal transition, migration and invasion of hypoxic breast cancer cells by activating the ROS-Notch1-Snail signaling pathway. Benefited from this bidirectional regulatory mechanism, MRPL52 is responsible for maintaining ROS levels in a window that can induce tumorigenic signal transduction without causing cytotoxicity in hypoxic breast cancer cells. Conclusions: This work elucidates the molecular mechanism by which MRPL52 mediates hypoxia-induced apoptotic resistance and metastatic initiation of breast cancer, and provides new insights into the interplay between cancer and the tumor microenvironment. Ivyspring International Publisher 2021-05-25 /pmc/articles/PMC8210597/ /pubmed/34158854 http://dx.doi.org/10.7150/thno.57804 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Li, Xinyan
Wang, Mengshen
Li, Su
Chen, Yuqiong
Wang, Mozhi
Wu, Zhonghua
Sun, Xiangyu
Yao, Litong
Dong, Haoran
Song, Yongxi
Xu, Yingying
HIF-1-induced mitochondrial ribosome protein L52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia
title HIF-1-induced mitochondrial ribosome protein L52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia
title_full HIF-1-induced mitochondrial ribosome protein L52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia
title_fullStr HIF-1-induced mitochondrial ribosome protein L52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia
title_full_unstemmed HIF-1-induced mitochondrial ribosome protein L52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia
title_short HIF-1-induced mitochondrial ribosome protein L52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia
title_sort hif-1-induced mitochondrial ribosome protein l52: a mechanism for breast cancer cellular adaptation and metastatic initiation in response to hypoxia
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8210597/
https://www.ncbi.nlm.nih.gov/pubmed/34158854
http://dx.doi.org/10.7150/thno.57804
work_keys_str_mv AT lixinyan hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT wangmengshen hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT lisu hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT chenyuqiong hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT wangmozhi hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT wuzhonghua hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT sunxiangyu hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT yaolitong hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT donghaoran hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT songyongxi hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia
AT xuyingying hif1inducedmitochondrialribosomeproteinl52amechanismforbreastcancercellularadaptationandmetastaticinitiationinresponsetohypoxia