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5-FU targets rpL3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53

Recent findings revealed in cancer cells novel stress response pathways, which in response to many chemotherapeutic drugs causing nucleolar stress, will function independently from tumor protein p53 (p53) and still lead to cell cycle arrest and/or apoptosis. Since it is known that most cancers lack...

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Autores principales: Pagliara, Valentina, Saide, Assunta, Mitidieri, Emma, Roberta d'Emmanuele di Villa, Bianca, Sorrentino, Raffaella, Russo, Giulia, Russo, Annapina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5226586/
https://www.ncbi.nlm.nih.gov/pubmed/27385096
http://dx.doi.org/10.18632/oncotarget.10385
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author Pagliara, Valentina
Saide, Assunta
Mitidieri, Emma
Roberta d'Emmanuele di Villa, Bianca
Sorrentino, Raffaella
Russo, Giulia
Russo, Annapina
author_facet Pagliara, Valentina
Saide, Assunta
Mitidieri, Emma
Roberta d'Emmanuele di Villa, Bianca
Sorrentino, Raffaella
Russo, Giulia
Russo, Annapina
author_sort Pagliara, Valentina
collection PubMed
description Recent findings revealed in cancer cells novel stress response pathways, which in response to many chemotherapeutic drugs causing nucleolar stress, will function independently from tumor protein p53 (p53) and still lead to cell cycle arrest and/or apoptosis. Since it is known that most cancers lack functional p53, it is of great interest to explore these emerging molecular mechanisms. Here, we demonstrate that nucleolar stress induced by 5-fluorouracil (5-FU) in colon cancer cells devoid of p53 leads to the activation of ribosomal protein L3 (rpL3) as proapoptotic factor. rpL3, as ribosome-free form, is a negative regulator of cystathionine-β-synthase (CBS) expression at transcriptional level through a molecular mechanism involving Sp1. The rpL3-CBS association affects CBS stability and, in addition, can trigger CBS translocation into mitochondria. Consequently apoptosis will be induced through the mitochondrial apoptotic cell death pathway characterized by an increased ratio of Bax to Bcl-2, cytochrome c release and subsequent caspase activation. It is noteworthy that silencing of CBS is associated to a strong increase of 5-FU-mediated inhibition of cell migration and proliferation. These data reveal a novel mechanism to accomplish p53-independent apoptosis and suggest a potential therapeutic approach aimed at upregulating rpL3 for treating cancers lacking p53.
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spelling pubmed-52265862017-01-18 5-FU targets rpL3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53 Pagliara, Valentina Saide, Assunta Mitidieri, Emma Roberta d'Emmanuele di Villa, Bianca Sorrentino, Raffaella Russo, Giulia Russo, Annapina Oncotarget Research Paper Recent findings revealed in cancer cells novel stress response pathways, which in response to many chemotherapeutic drugs causing nucleolar stress, will function independently from tumor protein p53 (p53) and still lead to cell cycle arrest and/or apoptosis. Since it is known that most cancers lack functional p53, it is of great interest to explore these emerging molecular mechanisms. Here, we demonstrate that nucleolar stress induced by 5-fluorouracil (5-FU) in colon cancer cells devoid of p53 leads to the activation of ribosomal protein L3 (rpL3) as proapoptotic factor. rpL3, as ribosome-free form, is a negative regulator of cystathionine-β-synthase (CBS) expression at transcriptional level through a molecular mechanism involving Sp1. The rpL3-CBS association affects CBS stability and, in addition, can trigger CBS translocation into mitochondria. Consequently apoptosis will be induced through the mitochondrial apoptotic cell death pathway characterized by an increased ratio of Bax to Bcl-2, cytochrome c release and subsequent caspase activation. It is noteworthy that silencing of CBS is associated to a strong increase of 5-FU-mediated inhibition of cell migration and proliferation. These data reveal a novel mechanism to accomplish p53-independent apoptosis and suggest a potential therapeutic approach aimed at upregulating rpL3 for treating cancers lacking p53. Impact Journals LLC 2016-07-02 /pmc/articles/PMC5226586/ /pubmed/27385096 http://dx.doi.org/10.18632/oncotarget.10385 Text en Copyright: © 2016 Pagliara 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
Pagliara, Valentina
Saide, Assunta
Mitidieri, Emma
Roberta d'Emmanuele di Villa, Bianca
Sorrentino, Raffaella
Russo, Giulia
Russo, Annapina
5-FU targets rpL3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53
title 5-FU targets rpL3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53
title_full 5-FU targets rpL3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53
title_fullStr 5-FU targets rpL3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53
title_full_unstemmed 5-FU targets rpL3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53
title_short 5-FU targets rpL3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53
title_sort 5-fu targets rpl3 to induce mitochondrial apoptosis via cystathionine-β-synthase in colon cancer cells lacking p53
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5226586/
https://www.ncbi.nlm.nih.gov/pubmed/27385096
http://dx.doi.org/10.18632/oncotarget.10385
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