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Multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets

Despite great advance in multiple myeloma (MM) treatment since 2000s, it is still an incurable disease and novel therapies are welcome. Therefore, the purpose of this study was to explore MM plasma cells' (MM-PC) proteome, in comparison with their normal counterparts (derived from palatine tons...

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Autores principales: Fernando, Rodrigo Carlini, de Carvalho, Fabricio, Mazzotti, Diego Robles, Evangelista, Adriane Feijó, Braga, Walter Moisés Tobias, de Lourdes Chauffaille, Maria, Leme, Adriana Franco Paes, Colleoni, Gisele Wally Braga
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4701225/
https://www.ncbi.nlm.nih.gov/pubmed/26807199
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author Fernando, Rodrigo Carlini
de Carvalho, Fabricio
Mazzotti, Diego Robles
Evangelista, Adriane Feijó
Braga, Walter Moisés Tobias
de Lourdes Chauffaille, Maria
Leme, Adriana Franco Paes
Colleoni, Gisele Wally Braga
author_facet Fernando, Rodrigo Carlini
de Carvalho, Fabricio
Mazzotti, Diego Robles
Evangelista, Adriane Feijó
Braga, Walter Moisés Tobias
de Lourdes Chauffaille, Maria
Leme, Adriana Franco Paes
Colleoni, Gisele Wally Braga
author_sort Fernando, Rodrigo Carlini
collection PubMed
description Despite great advance in multiple myeloma (MM) treatment since 2000s, it is still an incurable disease and novel therapies are welcome. Therefore, the purpose of this study was to explore MM plasma cells' (MM-PC) proteome, in comparison with their normal counterparts (derived from palatine tonsils of normal donors, ND-PC), in order to find potential therapeutic targets expressed on the surface of these cells. We also aimed to evaluate the proteome of MM cell lines with different genetic alterations, to confirm findings obtained with primary tumor cells. Bone marrow (BM) samples from eight new cases of MM and palatine tonsils from seven unmatched controls were submitted to PC separation and, in addition to two MM cell lines (U266, RPMI-8226), were submitted to protein extraction for mass spectrometry analyses. A total of 81 proteins were differentially expressed between MM-PC and ND-PC - 72 upregulated and nine downregulated; U266 vs. RPMI 8226 cell lines presented 61 differentially expressed proteins - 51 upregulated and 10 downregulated. On primary tumors, bioinformatics analyses highlighted upregulation of protein biosynthesis machinery, as well as downregulation of immune response components, such as MHC class I and II, and complement receptors. We also provided comprehensive information about U266 and RPMI-8226 cell lines' proteome and could confirm some patients' findings.
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spelling pubmed-47012252016-01-22 Multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets Fernando, Rodrigo Carlini de Carvalho, Fabricio Mazzotti, Diego Robles Evangelista, Adriane Feijó Braga, Walter Moisés Tobias de Lourdes Chauffaille, Maria Leme, Adriana Franco Paes Colleoni, Gisele Wally Braga Genes Cancer Research Paper Despite great advance in multiple myeloma (MM) treatment since 2000s, it is still an incurable disease and novel therapies are welcome. Therefore, the purpose of this study was to explore MM plasma cells' (MM-PC) proteome, in comparison with their normal counterparts (derived from palatine tonsils of normal donors, ND-PC), in order to find potential therapeutic targets expressed on the surface of these cells. We also aimed to evaluate the proteome of MM cell lines with different genetic alterations, to confirm findings obtained with primary tumor cells. Bone marrow (BM) samples from eight new cases of MM and palatine tonsils from seven unmatched controls were submitted to PC separation and, in addition to two MM cell lines (U266, RPMI-8226), were submitted to protein extraction for mass spectrometry analyses. A total of 81 proteins were differentially expressed between MM-PC and ND-PC - 72 upregulated and nine downregulated; U266 vs. RPMI 8226 cell lines presented 61 differentially expressed proteins - 51 upregulated and 10 downregulated. On primary tumors, bioinformatics analyses highlighted upregulation of protein biosynthesis machinery, as well as downregulation of immune response components, such as MHC class I and II, and complement receptors. We also provided comprehensive information about U266 and RPMI-8226 cell lines' proteome and could confirm some patients' findings. Impact Journals LLC 2015-11 /pmc/articles/PMC4701225/ /pubmed/26807199 Text en Copyright: © 2015 Fernando et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Fernando, Rodrigo Carlini
de Carvalho, Fabricio
Mazzotti, Diego Robles
Evangelista, Adriane Feijó
Braga, Walter Moisés Tobias
de Lourdes Chauffaille, Maria
Leme, Adriana Franco Paes
Colleoni, Gisele Wally Braga
Multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets
title Multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets
title_full Multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets
title_fullStr Multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets
title_full_unstemmed Multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets
title_short Multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets
title_sort multiple myeloma cell lines and primary tumors proteoma: protein biosynthesis and immune system as potential therapeutic targets
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4701225/
https://www.ncbi.nlm.nih.gov/pubmed/26807199
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