Mechanisms of FUS1/TUSC2 deficiency in mesothelioma and its tumorigenic transcriptional effects

<p>Abstract</p> <p>Background</p> <p>FUS1/TUSC2 is a novel tumor suppressor located in the critical 3p21.3 chromosomal region frequently deleted in multiple cancers. We previously showed that Tusc2-deficient mice display a complex immuno-inflammatory phenotype with a pr...

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Main Authors: Wistuba Ignacio, Tsao Anne, Liu Zhandong, Nonaka Daisuke, Prudkin Ljudmila, Ivanov Sergey V, Ivanova Alla V, Roth Jack, Pass Harvey I
Format: Article
Language:English
Published: BMC 2009-10-01
Series:Molecular Cancer
Online Access:http://www.molecular-cancer.com/content/8/1/91
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spelling doaj-66705db0285641b4a9149d969813bd1a2020-11-24T23:01:48ZengBMCMolecular Cancer1476-45982009-10-01819110.1186/1476-4598-8-91Mechanisms of FUS1/TUSC2 deficiency in mesothelioma and its tumorigenic transcriptional effectsWistuba IgnacioTsao AnneLiu ZhandongNonaka DaisukePrudkin LjudmilaIvanov Sergey VIvanova Alla VRoth JackPass Harvey I<p>Abstract</p> <p>Background</p> <p>FUS1/TUSC2 is a novel tumor suppressor located in the critical 3p21.3 chromosomal region frequently deleted in multiple cancers. We previously showed that Tusc2-deficient mice display a complex immuno-inflammatory phenotype with a predisposition to cancer. The goal of this study was to analyze possible involvement of TUSC2 in malignant pleural mesothelioma (MPM) - an aggressive inflammatory cancer associated with exposure to asbestos.</p> <p>Methods</p> <p>TUSC2 insufficiency in clinical specimens of MPM was assessed via RT-PCR (mRNA level), Representational Oligonucleotide Microarray Analysis (DNA level), and immunohistochemical evaluation (protein level). A possible link between TUSC2 expression and exposure to asbestos was studied using asbestos-treated mesothelial cells and ROS (reactive oxygen species) scavengers. Transcripional effects of TUSC2 in MPM were assessed through expression array analysis of TUSC2-transfected MPM cells.</p> <p>Results</p> <p>Expression of TUSC2 was downregulated in ~84% of MM specimens while loss of TUSC2-containing 3p21.3 region observed in ~36% of MPMs including stage 1 tumors. Exposure to asbestos led to a transcriptional suppression of TUSC2, which we found to be ROS-dependent. Expression array studies showed that TUSC2 activates transcription of multiple genes with tumor suppressor properties and down-regulates pro-tumorigenic genes, thus supporting its role as a tumor suppressor. In agreement with our knockout model, TUSC2 up-regulated IL-15 and also modulated more than 40 other genes (~20% of total TUSC2-affected genes) associated with immune system. Among these genes, we identified CD24 and CD274, key immunoreceptors that regulate immunogenic T and B cells and play important roles in systemic autoimmune diseases. Finally, clinical significance of TUSC2 transcriptional effects was validated on the expression array data produced previously on clinical specimens of MPM. In this analysis, 42 TUSC2 targets proved to be concordantly modulated in MM serving as disease discriminators.</p> <p>Conclusion</p> <p>Our data support immuno-therapeutic potential of TUSC2, define its targets, and underscore its importance as a transcriptional stimulator of anti-tumorigenic pathways.</p> http://www.molecular-cancer.com/content/8/1/91
collection DOAJ
language English
format Article
sources DOAJ
author Wistuba Ignacio
Tsao Anne
Liu Zhandong
Nonaka Daisuke
Prudkin Ljudmila
Ivanov Sergey V
Ivanova Alla V
Roth Jack
Pass Harvey I
spellingShingle Wistuba Ignacio
Tsao Anne
Liu Zhandong
Nonaka Daisuke
Prudkin Ljudmila
Ivanov Sergey V
Ivanova Alla V
Roth Jack
Pass Harvey I
Mechanisms of FUS1/TUSC2 deficiency in mesothelioma and its tumorigenic transcriptional effects
Molecular Cancer
author_facet Wistuba Ignacio
Tsao Anne
Liu Zhandong
Nonaka Daisuke
Prudkin Ljudmila
Ivanov Sergey V
Ivanova Alla V
Roth Jack
Pass Harvey I
author_sort Wistuba Ignacio
title Mechanisms of FUS1/TUSC2 deficiency in mesothelioma and its tumorigenic transcriptional effects
title_short Mechanisms of FUS1/TUSC2 deficiency in mesothelioma and its tumorigenic transcriptional effects
title_full Mechanisms of FUS1/TUSC2 deficiency in mesothelioma and its tumorigenic transcriptional effects
title_fullStr Mechanisms of FUS1/TUSC2 deficiency in mesothelioma and its tumorigenic transcriptional effects
title_full_unstemmed Mechanisms of FUS1/TUSC2 deficiency in mesothelioma and its tumorigenic transcriptional effects
title_sort mechanisms of fus1/tusc2 deficiency in mesothelioma and its tumorigenic transcriptional effects
publisher BMC
series Molecular Cancer
issn 1476-4598
publishDate 2009-10-01
description <p>Abstract</p> <p>Background</p> <p>FUS1/TUSC2 is a novel tumor suppressor located in the critical 3p21.3 chromosomal region frequently deleted in multiple cancers. We previously showed that Tusc2-deficient mice display a complex immuno-inflammatory phenotype with a predisposition to cancer. The goal of this study was to analyze possible involvement of TUSC2 in malignant pleural mesothelioma (MPM) - an aggressive inflammatory cancer associated with exposure to asbestos.</p> <p>Methods</p> <p>TUSC2 insufficiency in clinical specimens of MPM was assessed via RT-PCR (mRNA level), Representational Oligonucleotide Microarray Analysis (DNA level), and immunohistochemical evaluation (protein level). A possible link between TUSC2 expression and exposure to asbestos was studied using asbestos-treated mesothelial cells and ROS (reactive oxygen species) scavengers. Transcripional effects of TUSC2 in MPM were assessed through expression array analysis of TUSC2-transfected MPM cells.</p> <p>Results</p> <p>Expression of TUSC2 was downregulated in ~84% of MM specimens while loss of TUSC2-containing 3p21.3 region observed in ~36% of MPMs including stage 1 tumors. Exposure to asbestos led to a transcriptional suppression of TUSC2, which we found to be ROS-dependent. Expression array studies showed that TUSC2 activates transcription of multiple genes with tumor suppressor properties and down-regulates pro-tumorigenic genes, thus supporting its role as a tumor suppressor. In agreement with our knockout model, TUSC2 up-regulated IL-15 and also modulated more than 40 other genes (~20% of total TUSC2-affected genes) associated with immune system. Among these genes, we identified CD24 and CD274, key immunoreceptors that regulate immunogenic T and B cells and play important roles in systemic autoimmune diseases. Finally, clinical significance of TUSC2 transcriptional effects was validated on the expression array data produced previously on clinical specimens of MPM. In this analysis, 42 TUSC2 targets proved to be concordantly modulated in MM serving as disease discriminators.</p> <p>Conclusion</p> <p>Our data support immuno-therapeutic potential of TUSC2, define its targets, and underscore its importance as a transcriptional stimulator of anti-tumorigenic pathways.</p>
url http://www.molecular-cancer.com/content/8/1/91
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