Cargando…

The Primary Effect on the Proteome of ARID1A-mutated Ovarian Clear Cell Carcinoma is Downregulation of the Mevalonate Pathway at the Post-transcriptional Level

Inactivating mutations in ARID1A, which encodes a subunit of the SWI/SNF chromatin-remodeling complex, are found in over half of ovarian clear cell carcinoma cases and more broadly across most types of cancers. To identify ARID1A-dependent changes in intracellular signaling pathways, we performed pr...

Descripción completa

Detalles Bibliográficos
Autores principales: Goldman, Aaron R., Bitler, Benjamin G., Schug, Zachary, Conejo-Garcia, Jose R., Zhang, Rugang, Speicher, David W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5098034/
https://www.ncbi.nlm.nih.gov/pubmed/27654507
http://dx.doi.org/10.1074/mcp.M116.062539
_version_ 1782465704122908672
author Goldman, Aaron R.
Bitler, Benjamin G.
Schug, Zachary
Conejo-Garcia, Jose R.
Zhang, Rugang
Speicher, David W.
author_facet Goldman, Aaron R.
Bitler, Benjamin G.
Schug, Zachary
Conejo-Garcia, Jose R.
Zhang, Rugang
Speicher, David W.
author_sort Goldman, Aaron R.
collection PubMed
description Inactivating mutations in ARID1A, which encodes a subunit of the SWI/SNF chromatin-remodeling complex, are found in over half of ovarian clear cell carcinoma cases and more broadly across most types of cancers. To identify ARID1A-dependent changes in intracellular signaling pathways, we performed proteome analyses of isogenic ovarian clear cell carcinoma cell lines with or without ARID1A expression. Knockout of ARID1A in an ovarian clear cell carcinoma cell line with wild-type ARID1A, OVCA429, primarily resulted in downregulation of the mevalonate pathway, an important metabolic pathway involved in isoprenoid synthesis, cholesterol synthesis, and other downstream pathways. In a complementary experiment, expression of wild-type ARID1A in an ovarian clear cell carcinoma cell line containing mutated ARID1A, OVISE, affected the mevalonate pathway in a reciprocal manner. A striking aspect of these analyses was that, although only 5% of the detected proteome showed significant abundance changes, most proteins in the mevalonate pathway were coordinately affected by ARID1A status. There were generally corresponding changes when comparing the proteomics data to our previously published microarray data for ectopic expression of ARID1A in the OVISE cell line. However, ARID1A-dependent changes were not detected for genes within the mevalonate pathway. This discrepancy suggests that the mevalonate pathway is not regulated directly by ARID1A-mediated transcription and may be regulated post-transcriptionally. We conclude that ARID1A status indirectly influences the mevalonate pathway and probably influences other processes including glycogen metabolism and 14-3-3-mediated signaling. Further, our findings demonstrate that changes in mRNA levels are sometimes poor indicators of signaling pathways affected by gene manipulations in cancer cells.
format Online
Article
Text
id pubmed-5098034
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher The American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-50980342016-11-17 The Primary Effect on the Proteome of ARID1A-mutated Ovarian Clear Cell Carcinoma is Downregulation of the Mevalonate Pathway at the Post-transcriptional Level Goldman, Aaron R. Bitler, Benjamin G. Schug, Zachary Conejo-Garcia, Jose R. Zhang, Rugang Speicher, David W. Mol Cell Proteomics Research Inactivating mutations in ARID1A, which encodes a subunit of the SWI/SNF chromatin-remodeling complex, are found in over half of ovarian clear cell carcinoma cases and more broadly across most types of cancers. To identify ARID1A-dependent changes in intracellular signaling pathways, we performed proteome analyses of isogenic ovarian clear cell carcinoma cell lines with or without ARID1A expression. Knockout of ARID1A in an ovarian clear cell carcinoma cell line with wild-type ARID1A, OVCA429, primarily resulted in downregulation of the mevalonate pathway, an important metabolic pathway involved in isoprenoid synthesis, cholesterol synthesis, and other downstream pathways. In a complementary experiment, expression of wild-type ARID1A in an ovarian clear cell carcinoma cell line containing mutated ARID1A, OVISE, affected the mevalonate pathway in a reciprocal manner. A striking aspect of these analyses was that, although only 5% of the detected proteome showed significant abundance changes, most proteins in the mevalonate pathway were coordinately affected by ARID1A status. There were generally corresponding changes when comparing the proteomics data to our previously published microarray data for ectopic expression of ARID1A in the OVISE cell line. However, ARID1A-dependent changes were not detected for genes within the mevalonate pathway. This discrepancy suggests that the mevalonate pathway is not regulated directly by ARID1A-mediated transcription and may be regulated post-transcriptionally. We conclude that ARID1A status indirectly influences the mevalonate pathway and probably influences other processes including glycogen metabolism and 14-3-3-mediated signaling. Further, our findings demonstrate that changes in mRNA levels are sometimes poor indicators of signaling pathways affected by gene manipulations in cancer cells. The American Society for Biochemistry and Molecular Biology 2016-11 2016-09-21 /pmc/articles/PMC5098034/ /pubmed/27654507 http://dx.doi.org/10.1074/mcp.M116.062539 Text en © 2016 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Research
Goldman, Aaron R.
Bitler, Benjamin G.
Schug, Zachary
Conejo-Garcia, Jose R.
Zhang, Rugang
Speicher, David W.
The Primary Effect on the Proteome of ARID1A-mutated Ovarian Clear Cell Carcinoma is Downregulation of the Mevalonate Pathway at the Post-transcriptional Level
title The Primary Effect on the Proteome of ARID1A-mutated Ovarian Clear Cell Carcinoma is Downregulation of the Mevalonate Pathway at the Post-transcriptional Level
title_full The Primary Effect on the Proteome of ARID1A-mutated Ovarian Clear Cell Carcinoma is Downregulation of the Mevalonate Pathway at the Post-transcriptional Level
title_fullStr The Primary Effect on the Proteome of ARID1A-mutated Ovarian Clear Cell Carcinoma is Downregulation of the Mevalonate Pathway at the Post-transcriptional Level
title_full_unstemmed The Primary Effect on the Proteome of ARID1A-mutated Ovarian Clear Cell Carcinoma is Downregulation of the Mevalonate Pathway at the Post-transcriptional Level
title_short The Primary Effect on the Proteome of ARID1A-mutated Ovarian Clear Cell Carcinoma is Downregulation of the Mevalonate Pathway at the Post-transcriptional Level
title_sort primary effect on the proteome of arid1a-mutated ovarian clear cell carcinoma is downregulation of the mevalonate pathway at the post-transcriptional level
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5098034/
https://www.ncbi.nlm.nih.gov/pubmed/27654507
http://dx.doi.org/10.1074/mcp.M116.062539
work_keys_str_mv AT goldmanaaronr theprimaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT bitlerbenjaming theprimaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT schugzachary theprimaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT conejogarciajoser theprimaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT zhangrugang theprimaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT speicherdavidw theprimaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT goldmanaaronr primaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT bitlerbenjaming primaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT schugzachary primaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT conejogarciajoser primaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT zhangrugang primaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel
AT speicherdavidw primaryeffectontheproteomeofarid1amutatedovarianclearcellcarcinomaisdownregulationofthemevalonatepathwayattheposttranscriptionallevel