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The anti-apoptotic proteins NAF-1 and iASPP interact to drive apoptosis in cancer cells

Suppression of apoptosis is a key Hallmark of cancer cells, and reactivation of apoptosis is a major avenue for cancer therapy. We reveal an interaction between the two anti-apoptotic proteins iASPP and NAF-1, which are overexpressed in many types of cancer cells and tumors. iASPP is an inhibitory m...

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Autores principales: Iosub-Amir, Anat, Bai, Fang, Sohn, Yang-Sung, Song, Luhua, Tamir, Sagi, Marjault, Henri-Baptiste, Mayer, Guy, Karmi, Ola, Jennings, Patricia A., Mittler, Ron, Onuchic, José N., Friedler, Assaf, Nechushtai, Rachel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6349067/
https://www.ncbi.nlm.nih.gov/pubmed/30774867
http://dx.doi.org/10.1039/c8sc03390k
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author Iosub-Amir, Anat
Bai, Fang
Sohn, Yang-Sung
Song, Luhua
Tamir, Sagi
Marjault, Henri-Baptiste
Mayer, Guy
Karmi, Ola
Jennings, Patricia A.
Mittler, Ron
Onuchic, José N.
Friedler, Assaf
Nechushtai, Rachel
author_facet Iosub-Amir, Anat
Bai, Fang
Sohn, Yang-Sung
Song, Luhua
Tamir, Sagi
Marjault, Henri-Baptiste
Mayer, Guy
Karmi, Ola
Jennings, Patricia A.
Mittler, Ron
Onuchic, José N.
Friedler, Assaf
Nechushtai, Rachel
author_sort Iosub-Amir, Anat
collection PubMed
description Suppression of apoptosis is a key Hallmark of cancer cells, and reactivation of apoptosis is a major avenue for cancer therapy. We reveal an interaction between the two anti-apoptotic proteins iASPP and NAF-1, which are overexpressed in many types of cancer cells and tumors. iASPP is an inhibitory member of the ASPP protein family, whereas NAF-1 belongs to the NEET 2Fe–2S protein family. We show that the two proteins are stimulated to interact in cells during apoptosis. Using peptide array screening and computational methods we mapped the interaction interfaces of both proteins to residues 764–778 of iASPP that bind to a surface groove of NAF-1. A peptide corresponding to the iASPP 764–780 sequence stabilized the NAF-1 cluster, inhibited NAF-1 interaction with iASPP, and inhibited staurosporine-induced apoptosis activation in human breast cancer, as well as in PC-3 prostate cancer cells in which p53 is inactive. The iASPP 764–780 IC(50) value for inhibition of cell death in breast cancer cells was 13 ± 1 μM. The level of cell death inhibition by iASPP 764–780 was altered in breast cancer cells expressing different levels and/or variants of NAF-1, indicating that the peptide activity is associated with NAF-1 function. We propose that the interaction between iASPP and NAF-1 is required for apoptosis activation in cancer cells. This interaction uncovers a new layer in the highly complex regulation of cell death in cancer cells and opens new avenues of exploration into the development of novel anticancer drugs that reactivate apoptosis in malignant tumors.
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spelling pubmed-63490672019-02-15 The anti-apoptotic proteins NAF-1 and iASPP interact to drive apoptosis in cancer cells Iosub-Amir, Anat Bai, Fang Sohn, Yang-Sung Song, Luhua Tamir, Sagi Marjault, Henri-Baptiste Mayer, Guy Karmi, Ola Jennings, Patricia A. Mittler, Ron Onuchic, José N. Friedler, Assaf Nechushtai, Rachel Chem Sci Chemistry Suppression of apoptosis is a key Hallmark of cancer cells, and reactivation of apoptosis is a major avenue for cancer therapy. We reveal an interaction between the two anti-apoptotic proteins iASPP and NAF-1, which are overexpressed in many types of cancer cells and tumors. iASPP is an inhibitory member of the ASPP protein family, whereas NAF-1 belongs to the NEET 2Fe–2S protein family. We show that the two proteins are stimulated to interact in cells during apoptosis. Using peptide array screening and computational methods we mapped the interaction interfaces of both proteins to residues 764–778 of iASPP that bind to a surface groove of NAF-1. A peptide corresponding to the iASPP 764–780 sequence stabilized the NAF-1 cluster, inhibited NAF-1 interaction with iASPP, and inhibited staurosporine-induced apoptosis activation in human breast cancer, as well as in PC-3 prostate cancer cells in which p53 is inactive. The iASPP 764–780 IC(50) value for inhibition of cell death in breast cancer cells was 13 ± 1 μM. The level of cell death inhibition by iASPP 764–780 was altered in breast cancer cells expressing different levels and/or variants of NAF-1, indicating that the peptide activity is associated with NAF-1 function. We propose that the interaction between iASPP and NAF-1 is required for apoptosis activation in cancer cells. This interaction uncovers a new layer in the highly complex regulation of cell death in cancer cells and opens new avenues of exploration into the development of novel anticancer drugs that reactivate apoptosis in malignant tumors. Royal Society of Chemistry 2018-11-20 /pmc/articles/PMC6349067/ /pubmed/30774867 http://dx.doi.org/10.1039/c8sc03390k Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Iosub-Amir, Anat
Bai, Fang
Sohn, Yang-Sung
Song, Luhua
Tamir, Sagi
Marjault, Henri-Baptiste
Mayer, Guy
Karmi, Ola
Jennings, Patricia A.
Mittler, Ron
Onuchic, José N.
Friedler, Assaf
Nechushtai, Rachel
The anti-apoptotic proteins NAF-1 and iASPP interact to drive apoptosis in cancer cells
title The anti-apoptotic proteins NAF-1 and iASPP interact to drive apoptosis in cancer cells
title_full The anti-apoptotic proteins NAF-1 and iASPP interact to drive apoptosis in cancer cells
title_fullStr The anti-apoptotic proteins NAF-1 and iASPP interact to drive apoptosis in cancer cells
title_full_unstemmed The anti-apoptotic proteins NAF-1 and iASPP interact to drive apoptosis in cancer cells
title_short The anti-apoptotic proteins NAF-1 and iASPP interact to drive apoptosis in cancer cells
title_sort anti-apoptotic proteins naf-1 and iaspp interact to drive apoptosis in cancer cells
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6349067/
https://www.ncbi.nlm.nih.gov/pubmed/30774867
http://dx.doi.org/10.1039/c8sc03390k
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