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FTSJ2, a Heat Shock-Inducible Mitochondrial Protein, Suppresses Cell Invasion and Migration

Ribosomal RNA large subunit methyltransferase J (RrmJ), an Escherichia coli heat shock protein, is responsible for 2′-O-ribose methylation in 23S rRNA. In mammals, three close homologs of RrmJ have been identified and have been designated as FTSJ1, FTSJ2 and FTSJ3; however, little is known about the...

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Autores principales: Lai, Cheng-Wei, Chen, Hsiao-Ling, Lin, Ken-Yo, Liu, Fang-Chueh, Chong, Kowit-Yu, Cheng, Winston T. K., Chen, Chuan-Mu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3942483/
https://www.ncbi.nlm.nih.gov/pubmed/24595062
http://dx.doi.org/10.1371/journal.pone.0090818
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author Lai, Cheng-Wei
Chen, Hsiao-Ling
Lin, Ken-Yo
Liu, Fang-Chueh
Chong, Kowit-Yu
Cheng, Winston T. K.
Chen, Chuan-Mu
author_facet Lai, Cheng-Wei
Chen, Hsiao-Ling
Lin, Ken-Yo
Liu, Fang-Chueh
Chong, Kowit-Yu
Cheng, Winston T. K.
Chen, Chuan-Mu
author_sort Lai, Cheng-Wei
collection PubMed
description Ribosomal RNA large subunit methyltransferase J (RrmJ), an Escherichia coli heat shock protein, is responsible for 2′-O-ribose methylation in 23S rRNA. In mammals, three close homologs of RrmJ have been identified and have been designated as FTSJ1, FTSJ2 and FTSJ3; however, little is known about these genes. In this study, we characterized the mammalian FTSJ2, which was the most related protein to RrmJ in a phylogenetic analysis that had similar amino acid sequence features and tertiary protein structures of RrmJ. FTSJ2 was first identified in this study as a nucleus encoded mitochondrial protein that preserves the heat shock protein character in mammals in which the mRNA expressions was increased in porcine lung tissues and A549 cells after heat shock treatment. In addition, a recent study in non-small cell lung cancer (NSCLC) suggested that the FTSJ2 gene is located in a novel oncogenic locus. However, our results demonstrate that the expression of FTSJ2 mRNA was decreased in the more invasive subline (CL1-5) of the lung adenocarcinoma cells (CL1) compared with the less invasive subline (CL1-0), and overexpression of FTSJ2 resulted in the inhibition of cell invasion and migration in the rhabdomyosarcoma cell (TE671). In conclusion, our findings indicate that mammalian FTSJ2 is a mitochondrial ortholog of E. coli RrmJ and conserves the heat shock protein properties. Moreover, FTSJ2 possesses suppressive effects on the invasion and migration of cancer cells.
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spelling pubmed-39424832014-03-06 FTSJ2, a Heat Shock-Inducible Mitochondrial Protein, Suppresses Cell Invasion and Migration Lai, Cheng-Wei Chen, Hsiao-Ling Lin, Ken-Yo Liu, Fang-Chueh Chong, Kowit-Yu Cheng, Winston T. K. Chen, Chuan-Mu PLoS One Research Article Ribosomal RNA large subunit methyltransferase J (RrmJ), an Escherichia coli heat shock protein, is responsible for 2′-O-ribose methylation in 23S rRNA. In mammals, three close homologs of RrmJ have been identified and have been designated as FTSJ1, FTSJ2 and FTSJ3; however, little is known about these genes. In this study, we characterized the mammalian FTSJ2, which was the most related protein to RrmJ in a phylogenetic analysis that had similar amino acid sequence features and tertiary protein structures of RrmJ. FTSJ2 was first identified in this study as a nucleus encoded mitochondrial protein that preserves the heat shock protein character in mammals in which the mRNA expressions was increased in porcine lung tissues and A549 cells after heat shock treatment. In addition, a recent study in non-small cell lung cancer (NSCLC) suggested that the FTSJ2 gene is located in a novel oncogenic locus. However, our results demonstrate that the expression of FTSJ2 mRNA was decreased in the more invasive subline (CL1-5) of the lung adenocarcinoma cells (CL1) compared with the less invasive subline (CL1-0), and overexpression of FTSJ2 resulted in the inhibition of cell invasion and migration in the rhabdomyosarcoma cell (TE671). In conclusion, our findings indicate that mammalian FTSJ2 is a mitochondrial ortholog of E. coli RrmJ and conserves the heat shock protein properties. Moreover, FTSJ2 possesses suppressive effects on the invasion and migration of cancer cells. Public Library of Science 2014-03-04 /pmc/articles/PMC3942483/ /pubmed/24595062 http://dx.doi.org/10.1371/journal.pone.0090818 Text en © 2014 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, Cheng-Wei
Chen, Hsiao-Ling
Lin, Ken-Yo
Liu, Fang-Chueh
Chong, Kowit-Yu
Cheng, Winston T. K.
Chen, Chuan-Mu
FTSJ2, a Heat Shock-Inducible Mitochondrial Protein, Suppresses Cell Invasion and Migration
title FTSJ2, a Heat Shock-Inducible Mitochondrial Protein, Suppresses Cell Invasion and Migration
title_full FTSJ2, a Heat Shock-Inducible Mitochondrial Protein, Suppresses Cell Invasion and Migration
title_fullStr FTSJ2, a Heat Shock-Inducible Mitochondrial Protein, Suppresses Cell Invasion and Migration
title_full_unstemmed FTSJ2, a Heat Shock-Inducible Mitochondrial Protein, Suppresses Cell Invasion and Migration
title_short FTSJ2, a Heat Shock-Inducible Mitochondrial Protein, Suppresses Cell Invasion and Migration
title_sort ftsj2, a heat shock-inducible mitochondrial protein, suppresses cell invasion and migration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3942483/
https://www.ncbi.nlm.nih.gov/pubmed/24595062
http://dx.doi.org/10.1371/journal.pone.0090818
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