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Multi-cancer V-ATPase molecular signatures: A distinctive balance of subunit C isoforms in esophageal carcinoma

BACKGROUND: V-ATPases are hetero-oligomeric enzymes consisting of 13 subunits and playing key roles in ion homeostasis and signaling. Differential expression of these proton pumps has been implicated in carcinogenesis and metastasis. To elucidate putative molecular signatures underlying these phenom...

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Autores principales: Couto-Vieira, Juliana, Nicolau-Neto, Pedro, Costa, Evenilton Pessoa, Figueira, Frederico Firme, Simão, Tatiana de Almeida, Okorokova-Façanha, Anna Lvovna, Ribeiro Pinto, Luis Felipe, Façanha, Arnoldo Rocha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6948166/
https://www.ncbi.nlm.nih.gov/pubmed/31901859
http://dx.doi.org/10.1016/j.ebiom.2019.11.042
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author Couto-Vieira, Juliana
Nicolau-Neto, Pedro
Costa, Evenilton Pessoa
Figueira, Frederico Firme
Simão, Tatiana de Almeida
Okorokova-Façanha, Anna Lvovna
Ribeiro Pinto, Luis Felipe
Façanha, Arnoldo Rocha
author_facet Couto-Vieira, Juliana
Nicolau-Neto, Pedro
Costa, Evenilton Pessoa
Figueira, Frederico Firme
Simão, Tatiana de Almeida
Okorokova-Façanha, Anna Lvovna
Ribeiro Pinto, Luis Felipe
Façanha, Arnoldo Rocha
author_sort Couto-Vieira, Juliana
collection PubMed
description BACKGROUND: V-ATPases are hetero-oligomeric enzymes consisting of 13 subunits and playing key roles in ion homeostasis and signaling. Differential expression of these proton pumps has been implicated in carcinogenesis and metastasis. To elucidate putative molecular signatures underlying these phenomena, we evaluated the expression of V-ATPase genes in esophageal squamous cell carcinoma (ESCC) and extended the analysis to other cancers. METHODS: Expression of all V-ATPase genes were analyzed in ESCC by a microarray data and in different types of tumors available from public databases. Expression of C isoforms was validated by qRT-PCR in paired ESCC samples. FINDINGS: A differential expression pattern of V-ATPase genes was found in different tumors, with combinations in up- and down-regulation leading to an imbalance in the expression ratios of their isoforms. Particularly, a high C1 and low C2 expression pattern accurately discriminated ESCC from normal tissues. Structural modeling of C2a isoform uncovered motifs for oncogenic kinases in an additional peptide stretch, and an actin-biding domain downstream to this sequence. INTERPRETATION: Altogether these data revealed that the expression ratios of subunits/isoforms could form a conformational code that controls the H(+) pump regulation and interactions related to tumorigenesis. This study establishes a paradigm change by uncovering multi-cancer molecular signatures present in the V-ATPase structure, from which future studies must address the complexity of the onco-related V-ATPase assemblies as a whole, rather than targeting changes in specific subunit isoforms. FUNDING: This work was supported by grants from CNPq and FAPERJ-Brazil.
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spelling pubmed-69481662020-01-09 Multi-cancer V-ATPase molecular signatures: A distinctive balance of subunit C isoforms in esophageal carcinoma Couto-Vieira, Juliana Nicolau-Neto, Pedro Costa, Evenilton Pessoa Figueira, Frederico Firme Simão, Tatiana de Almeida Okorokova-Façanha, Anna Lvovna Ribeiro Pinto, Luis Felipe Façanha, Arnoldo Rocha EBioMedicine Research paper BACKGROUND: V-ATPases are hetero-oligomeric enzymes consisting of 13 subunits and playing key roles in ion homeostasis and signaling. Differential expression of these proton pumps has been implicated in carcinogenesis and metastasis. To elucidate putative molecular signatures underlying these phenomena, we evaluated the expression of V-ATPase genes in esophageal squamous cell carcinoma (ESCC) and extended the analysis to other cancers. METHODS: Expression of all V-ATPase genes were analyzed in ESCC by a microarray data and in different types of tumors available from public databases. Expression of C isoforms was validated by qRT-PCR in paired ESCC samples. FINDINGS: A differential expression pattern of V-ATPase genes was found in different tumors, with combinations in up- and down-regulation leading to an imbalance in the expression ratios of their isoforms. Particularly, a high C1 and low C2 expression pattern accurately discriminated ESCC from normal tissues. Structural modeling of C2a isoform uncovered motifs for oncogenic kinases in an additional peptide stretch, and an actin-biding domain downstream to this sequence. INTERPRETATION: Altogether these data revealed that the expression ratios of subunits/isoforms could form a conformational code that controls the H(+) pump regulation and interactions related to tumorigenesis. This study establishes a paradigm change by uncovering multi-cancer molecular signatures present in the V-ATPase structure, from which future studies must address the complexity of the onco-related V-ATPase assemblies as a whole, rather than targeting changes in specific subunit isoforms. FUNDING: This work was supported by grants from CNPq and FAPERJ-Brazil. Elsevier 2020-01-03 /pmc/articles/PMC6948166/ /pubmed/31901859 http://dx.doi.org/10.1016/j.ebiom.2019.11.042 Text en © 2020 The Authors. Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Couto-Vieira, Juliana
Nicolau-Neto, Pedro
Costa, Evenilton Pessoa
Figueira, Frederico Firme
Simão, Tatiana de Almeida
Okorokova-Façanha, Anna Lvovna
Ribeiro Pinto, Luis Felipe
Façanha, Arnoldo Rocha
Multi-cancer V-ATPase molecular signatures: A distinctive balance of subunit C isoforms in esophageal carcinoma
title Multi-cancer V-ATPase molecular signatures: A distinctive balance of subunit C isoforms in esophageal carcinoma
title_full Multi-cancer V-ATPase molecular signatures: A distinctive balance of subunit C isoforms in esophageal carcinoma
title_fullStr Multi-cancer V-ATPase molecular signatures: A distinctive balance of subunit C isoforms in esophageal carcinoma
title_full_unstemmed Multi-cancer V-ATPase molecular signatures: A distinctive balance of subunit C isoforms in esophageal carcinoma
title_short Multi-cancer V-ATPase molecular signatures: A distinctive balance of subunit C isoforms in esophageal carcinoma
title_sort multi-cancer v-atpase molecular signatures: a distinctive balance of subunit c isoforms in esophageal carcinoma
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6948166/
https://www.ncbi.nlm.nih.gov/pubmed/31901859
http://dx.doi.org/10.1016/j.ebiom.2019.11.042
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