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The Succinated Proteome of FH-Mutant Tumours

Inherited mutations in the Krebs cycle enzyme fumarate hydratase (FH) predispose to hereditary leiomyomatosis and renal cell cancer (HLRCC). Loss of FH activity in HLRCC tumours causes accumulation of the Krebs cycle intermediate fumarate to high levels, which may act as an oncometabolite through va...

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Autores principales: Yang, Ming, Ternette, Nicola, Su, Huizhong, Dabiri, Raliat, Kessler, Benedikt M., Adam, Julie, Teh, Bin Tean, Pollard, Patrick J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4192685/
https://www.ncbi.nlm.nih.gov/pubmed/25105836
http://dx.doi.org/10.3390/metabo4030640
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author Yang, Ming
Ternette, Nicola
Su, Huizhong
Dabiri, Raliat
Kessler, Benedikt M.
Adam, Julie
Teh, Bin Tean
Pollard, Patrick J.
author_facet Yang, Ming
Ternette, Nicola
Su, Huizhong
Dabiri, Raliat
Kessler, Benedikt M.
Adam, Julie
Teh, Bin Tean
Pollard, Patrick J.
author_sort Yang, Ming
collection PubMed
description Inherited mutations in the Krebs cycle enzyme fumarate hydratase (FH) predispose to hereditary leiomyomatosis and renal cell cancer (HLRCC). Loss of FH activity in HLRCC tumours causes accumulation of the Krebs cycle intermediate fumarate to high levels, which may act as an oncometabolite through various, but not necessarily mutually exclusive, mechanisms. One such mechanism, succination, is an irreversible non-enzymatic modification of cysteine residues by fumarate, to form S-(2-succino)cysteine (2SC). Previous studies have demonstrated that succination of proteins including glyceraldehyde 3-phosphate dehydrogenase (GAPDH), kelch-like ECH-associated protein 1 (KEAP1) and mitochondrial aconitase (ACO2) can have profound effects on cellular metabolism. Furthermore, immunostaining for 2SC is a sensitive and specific biomarker for HLRCC tumours. Here, we performed a proteomic screen on an FH-mutant tumour and two HLRCC-derived cancer cell lines and identified 60 proteins where one or more cysteine residues were succinated; 10 of which were succinated at cysteine residues either predicted, or experimentally proven, to be functionally significant. Bioinformatic enrichment analyses identified most succinated targets to be involved in redox signaling. To our knowledge, this is the first proteomic-based succination screen performed in human tumours and cancer-derived cells and has identified novel 2SC targets that may be relevant to the pathogenesis of HLRCC.
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spelling pubmed-41926852014-10-10 The Succinated Proteome of FH-Mutant Tumours Yang, Ming Ternette, Nicola Su, Huizhong Dabiri, Raliat Kessler, Benedikt M. Adam, Julie Teh, Bin Tean Pollard, Patrick J. Metabolites Brief Report Inherited mutations in the Krebs cycle enzyme fumarate hydratase (FH) predispose to hereditary leiomyomatosis and renal cell cancer (HLRCC). Loss of FH activity in HLRCC tumours causes accumulation of the Krebs cycle intermediate fumarate to high levels, which may act as an oncometabolite through various, but not necessarily mutually exclusive, mechanisms. One such mechanism, succination, is an irreversible non-enzymatic modification of cysteine residues by fumarate, to form S-(2-succino)cysteine (2SC). Previous studies have demonstrated that succination of proteins including glyceraldehyde 3-phosphate dehydrogenase (GAPDH), kelch-like ECH-associated protein 1 (KEAP1) and mitochondrial aconitase (ACO2) can have profound effects on cellular metabolism. Furthermore, immunostaining for 2SC is a sensitive and specific biomarker for HLRCC tumours. Here, we performed a proteomic screen on an FH-mutant tumour and two HLRCC-derived cancer cell lines and identified 60 proteins where one or more cysteine residues were succinated; 10 of which were succinated at cysteine residues either predicted, or experimentally proven, to be functionally significant. Bioinformatic enrichment analyses identified most succinated targets to be involved in redox signaling. To our knowledge, this is the first proteomic-based succination screen performed in human tumours and cancer-derived cells and has identified novel 2SC targets that may be relevant to the pathogenesis of HLRCC. MDPI 2014-08-07 /pmc/articles/PMC4192685/ /pubmed/25105836 http://dx.doi.org/10.3390/metabo4030640 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Brief Report
Yang, Ming
Ternette, Nicola
Su, Huizhong
Dabiri, Raliat
Kessler, Benedikt M.
Adam, Julie
Teh, Bin Tean
Pollard, Patrick J.
The Succinated Proteome of FH-Mutant Tumours
title The Succinated Proteome of FH-Mutant Tumours
title_full The Succinated Proteome of FH-Mutant Tumours
title_fullStr The Succinated Proteome of FH-Mutant Tumours
title_full_unstemmed The Succinated Proteome of FH-Mutant Tumours
title_short The Succinated Proteome of FH-Mutant Tumours
title_sort succinated proteome of fh-mutant tumours
topic Brief Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4192685/
https://www.ncbi.nlm.nih.gov/pubmed/25105836
http://dx.doi.org/10.3390/metabo4030640
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