Regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the CALB2 promoter

Abstract Background The calcium-binding protein calretinin (gene name: CALB2) is currently considered as the most sensitive and specific marker for the diagnosis of malignant mesothelioma (MM). MM is a very aggressive tumor strongly linked to asbestos exposure and with no existing cure so far. The m...

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Main Authors: Walter Blum, László Pecze, Janine Wörthmüller Rodriguez, Martine Steinauer, Beat Schwaller
Format: Article
Language:English
Published: BMC 2018-04-01
Series:BMC Cancer
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12885-018-4385-7
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spelling doaj-1ad00d26a8e44e88afb1a1362eac89482020-11-25T01:16:32ZengBMCBMC Cancer1471-24072018-04-0118111510.1186/s12885-018-4385-7Regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the CALB2 promoterWalter Blum0László Pecze1Janine Wörthmüller Rodriguez2Martine Steinauer3Beat Schwaller4Anatomy, Department of Medicine, University of FribourgAnatomy, Department of Medicine, University of FribourgAnatomy, Department of Medicine, University of FribourgAnatomy, Department of Medicine, University of FribourgAnatomy, Department of Medicine, University of FribourgAbstract Background The calcium-binding protein calretinin (gene name: CALB2) is currently considered as the most sensitive and specific marker for the diagnosis of malignant mesothelioma (MM). MM is a very aggressive tumor strongly linked to asbestos exposure and with no existing cure so far. The mechanisms of calretinin regulation, as well as its distinct function in MM are still poorly understood. Methods We searched for transcription factors binding to the CALB2 promoter and modulating calretinin expression. For this, DNA-binding assays followed by peptide shotgun-mass spectroscopy analyses were used. CALB2 promoter activity was assessed by dual-luciferase reporter assays. Furthermore, we analyzed the effects of CALB2 promoter-binding proteins by lentiviral-mediated overexpression or down-regulation of identified proteins in MM cells. The modulation of expression of such proteins by butyrate was determined by subsequent Western blot analysis. Immunohistochemical analysis of embryonic mouse lung tissue served to verify the simultaneous co-expression of calretinin and proteins interacting with the CALB2 promoter during early development. Finally, direct interactions of calretinin with target proteins were evidenced by co-immunoprecipitation experiments. Results Septin 7 was identified as a butyrate-dependent transcription factor binding to a CALB2 promoter region containing butyrate-responsive elements (BRE) resulting in decreased calretinin expression. Accordingly, septin 7 overexpression decreased calretinin expression levels in MM cells. The regulation was found to operate bi-directionally, i.e. calretinin overexpression also decreased septin 7 levels. During murine embryonic development calretinin and septin 7 were found to be co-expressed in embryonic mesenchyme and undifferentiated mesothelial cells. In MM cells, calretinin and septin 7 colocalized during cytokinesis in distinct regions of the cleavage furrow and in the midbody region of mitotic cells. Co-immunoprecipitation experiments revealed this co-localization to be the result of a direct interaction between calretinin and septin 7. Conclusions Our results demonstrate septin 7 not only serving as a “cytoskeletal” protein, but also as a transcription factor repressing calretinin expression. The negative regulation of calretinin by septin 7 and vice versa sheds new light on mechanisms possibly implicated in MM formation and identifies these proteins as transcriptional regulators and putative targets for MM therapy.http://link.springer.com/article/10.1186/s12885-018-4385-7CalretininSeptin 7Malignant mesotheliomaTranscriptional regulationButyrate
collection DOAJ
language English
format Article
sources DOAJ
author Walter Blum
László Pecze
Janine Wörthmüller Rodriguez
Martine Steinauer
Beat Schwaller
spellingShingle Walter Blum
László Pecze
Janine Wörthmüller Rodriguez
Martine Steinauer
Beat Schwaller
Regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the CALB2 promoter
BMC Cancer
Calretinin
Septin 7
Malignant mesothelioma
Transcriptional regulation
Butyrate
author_facet Walter Blum
László Pecze
Janine Wörthmüller Rodriguez
Martine Steinauer
Beat Schwaller
author_sort Walter Blum
title Regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the CALB2 promoter
title_short Regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the CALB2 promoter
title_full Regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the CALB2 promoter
title_fullStr Regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the CALB2 promoter
title_full_unstemmed Regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the CALB2 promoter
title_sort regulation of calretinin in malignant mesothelioma is mediated by septin 7 binding to the calb2 promoter
publisher BMC
series BMC Cancer
issn 1471-2407
publishDate 2018-04-01
description Abstract Background The calcium-binding protein calretinin (gene name: CALB2) is currently considered as the most sensitive and specific marker for the diagnosis of malignant mesothelioma (MM). MM is a very aggressive tumor strongly linked to asbestos exposure and with no existing cure so far. The mechanisms of calretinin regulation, as well as its distinct function in MM are still poorly understood. Methods We searched for transcription factors binding to the CALB2 promoter and modulating calretinin expression. For this, DNA-binding assays followed by peptide shotgun-mass spectroscopy analyses were used. CALB2 promoter activity was assessed by dual-luciferase reporter assays. Furthermore, we analyzed the effects of CALB2 promoter-binding proteins by lentiviral-mediated overexpression or down-regulation of identified proteins in MM cells. The modulation of expression of such proteins by butyrate was determined by subsequent Western blot analysis. Immunohistochemical analysis of embryonic mouse lung tissue served to verify the simultaneous co-expression of calretinin and proteins interacting with the CALB2 promoter during early development. Finally, direct interactions of calretinin with target proteins were evidenced by co-immunoprecipitation experiments. Results Septin 7 was identified as a butyrate-dependent transcription factor binding to a CALB2 promoter region containing butyrate-responsive elements (BRE) resulting in decreased calretinin expression. Accordingly, septin 7 overexpression decreased calretinin expression levels in MM cells. The regulation was found to operate bi-directionally, i.e. calretinin overexpression also decreased septin 7 levels. During murine embryonic development calretinin and septin 7 were found to be co-expressed in embryonic mesenchyme and undifferentiated mesothelial cells. In MM cells, calretinin and septin 7 colocalized during cytokinesis in distinct regions of the cleavage furrow and in the midbody region of mitotic cells. Co-immunoprecipitation experiments revealed this co-localization to be the result of a direct interaction between calretinin and septin 7. Conclusions Our results demonstrate septin 7 not only serving as a “cytoskeletal” protein, but also as a transcription factor repressing calretinin expression. The negative regulation of calretinin by septin 7 and vice versa sheds new light on mechanisms possibly implicated in MM formation and identifies these proteins as transcriptional regulators and putative targets for MM therapy.
topic Calretinin
Septin 7
Malignant mesothelioma
Transcriptional regulation
Butyrate
url http://link.springer.com/article/10.1186/s12885-018-4385-7
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