The requirement of mitochondrial RNA polymerase for non-small cell lung cancer cell growth
Abstract POLRMT (RNA polymerase mitochondrial) is responsible for the transcription of mitochondrial genome encoding key components of oxidative phosphorylation. This process is important for cancer cell growth. The current study tested expression and potential functions of POLRMT in non-small cell...
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doaj-000765444bb74f33bb3e030a3028ec9c2021-08-01T11:04:53ZengNature Publishing GroupCell Death and Disease2041-48892021-07-0112811210.1038/s41419-021-04039-2The requirement of mitochondrial RNA polymerase for non-small cell lung cancer cell growthTong Zhou0Yong-Hua Sang1Shang Cai2Chun Xu3Min-hua Shi4Department of Respiratory and Critical Care Medicine, The Second Affiliated Hospital of Soochow UniversityDepartment of Thoracic Surgery, The Second affiliated Hospital of Soochow UniversityDepartment of Radiotherapy and Oncology, The Second Affiliated Hospital of Soochow UniversityDepartment of Cardio-Thoracic Surgery, The First Affiliated Hospital of Soochow UniversityDepartment of Respiratory and Critical Care Medicine, The Second Affiliated Hospital of Soochow UniversityAbstract POLRMT (RNA polymerase mitochondrial) is responsible for the transcription of mitochondrial genome encoding key components of oxidative phosphorylation. This process is important for cancer cell growth. The current study tested expression and potential functions of POLRMT in non-small cell lung cancer (NSCLC). TCGA cohorts and the results from the local lung cancer tissues showed that POLRMT is overexpressed in human lung cancer tissues. In both primary human NSCLC cells and A549 cells, POLRMT silencing (by targeted lentiviral shRNAs) or knockout (through CRSIPR/Cas9 gene editing method) potently inhibited cell viability, proliferation, migration, and invasion, and induced apoptosis activation. On the contrast, ectopic overexpression of POLRMT using a lentiviral construct accelerated cell proliferation and migration in NSCLC cells. The mtDNA contents, mRNA levels of mitochondrial transcripts, and subunits of respiratory chain complexes, as well as S6 phosphorylation, were decreased in POLRMT-silenced or -knockout NSCLC cells, but increased after ectopic POLRMT overexpression. In vivo, intratumoral injection of POLRMT shRNA adeno-associated virus (AAV) potently inhibited NSCLC xenograft growth in severe combined immune deficiency mice. The mtDNA contents, mRNA levels of mitochondria respiratory chain complex subunits, and S6 phosphorylation were decreased in POLRMT shRNA AAV-injected NSCLC xenograft tissues. These results show that POLRMT is a novel and important oncogene required for NSCLC cell growth in vitro and in vivo.https://doi.org/10.1038/s41419-021-04039-2 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tong Zhou Yong-Hua Sang Shang Cai Chun Xu Min-hua Shi |
spellingShingle |
Tong Zhou Yong-Hua Sang Shang Cai Chun Xu Min-hua Shi The requirement of mitochondrial RNA polymerase for non-small cell lung cancer cell growth Cell Death and Disease |
author_facet |
Tong Zhou Yong-Hua Sang Shang Cai Chun Xu Min-hua Shi |
author_sort |
Tong Zhou |
title |
The requirement of mitochondrial RNA polymerase for non-small cell lung cancer cell growth |
title_short |
The requirement of mitochondrial RNA polymerase for non-small cell lung cancer cell growth |
title_full |
The requirement of mitochondrial RNA polymerase for non-small cell lung cancer cell growth |
title_fullStr |
The requirement of mitochondrial RNA polymerase for non-small cell lung cancer cell growth |
title_full_unstemmed |
The requirement of mitochondrial RNA polymerase for non-small cell lung cancer cell growth |
title_sort |
requirement of mitochondrial rna polymerase for non-small cell lung cancer cell growth |
publisher |
Nature Publishing Group |
series |
Cell Death and Disease |
issn |
2041-4889 |
publishDate |
2021-07-01 |
description |
Abstract POLRMT (RNA polymerase mitochondrial) is responsible for the transcription of mitochondrial genome encoding key components of oxidative phosphorylation. This process is important for cancer cell growth. The current study tested expression and potential functions of POLRMT in non-small cell lung cancer (NSCLC). TCGA cohorts and the results from the local lung cancer tissues showed that POLRMT is overexpressed in human lung cancer tissues. In both primary human NSCLC cells and A549 cells, POLRMT silencing (by targeted lentiviral shRNAs) or knockout (through CRSIPR/Cas9 gene editing method) potently inhibited cell viability, proliferation, migration, and invasion, and induced apoptosis activation. On the contrast, ectopic overexpression of POLRMT using a lentiviral construct accelerated cell proliferation and migration in NSCLC cells. The mtDNA contents, mRNA levels of mitochondrial transcripts, and subunits of respiratory chain complexes, as well as S6 phosphorylation, were decreased in POLRMT-silenced or -knockout NSCLC cells, but increased after ectopic POLRMT overexpression. In vivo, intratumoral injection of POLRMT shRNA adeno-associated virus (AAV) potently inhibited NSCLC xenograft growth in severe combined immune deficiency mice. The mtDNA contents, mRNA levels of mitochondria respiratory chain complex subunits, and S6 phosphorylation were decreased in POLRMT shRNA AAV-injected NSCLC xenograft tissues. These results show that POLRMT is a novel and important oncogene required for NSCLC cell growth in vitro and in vivo. |
url |
https://doi.org/10.1038/s41419-021-04039-2 |
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