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Interactions between mitoNEET and NAF-1 in cells

The NEET proteins mitoNEET (mNT) and nutrient-deprivation autophagy factor-1 (NAF-1) are required for cancer cell proliferation and resistance to oxidative stress. NAF-1 and mNT are also implicated in a number of other human pathologies including diabetes, neurodegeneration and cardiovascular diseas...

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Autores principales: Karmi, Ola, Holt, Sarah H., Song, Luhua, Tamir, Sagi, Luo, Yuting, Bai, Fang, Adenwalla, Ammar, Darash-Yahana, Merav, Sohn, Yang-Sung, Jennings, Patricia A., Azad, Rajeev K., Onuchic, Jose' N., Morcos, Faruck, Nechushtai, Rachel, Mittler, Ron
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5398536/
https://www.ncbi.nlm.nih.gov/pubmed/28426722
http://dx.doi.org/10.1371/journal.pone.0175796
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author Karmi, Ola
Holt, Sarah H.
Song, Luhua
Tamir, Sagi
Luo, Yuting
Bai, Fang
Adenwalla, Ammar
Darash-Yahana, Merav
Sohn, Yang-Sung
Jennings, Patricia A.
Azad, Rajeev K.
Onuchic, Jose' N.
Morcos, Faruck
Nechushtai, Rachel
Mittler, Ron
author_facet Karmi, Ola
Holt, Sarah H.
Song, Luhua
Tamir, Sagi
Luo, Yuting
Bai, Fang
Adenwalla, Ammar
Darash-Yahana, Merav
Sohn, Yang-Sung
Jennings, Patricia A.
Azad, Rajeev K.
Onuchic, Jose' N.
Morcos, Faruck
Nechushtai, Rachel
Mittler, Ron
author_sort Karmi, Ola
collection PubMed
description The NEET proteins mitoNEET (mNT) and nutrient-deprivation autophagy factor-1 (NAF-1) are required for cancer cell proliferation and resistance to oxidative stress. NAF-1 and mNT are also implicated in a number of other human pathologies including diabetes, neurodegeneration and cardiovascular disease, as well as in development, differentiation and aging. Previous studies suggested that mNT and NAF-1 could function in the same pathway in mammalian cells, preventing the over-accumulation of iron and reactive oxygen species (ROS) in mitochondria. Nevertheless, it is unknown whether these two proteins directly interact in cells, and how they mediate their function. Here we demonstrate, using yeast two-hybrid, in vivo bimolecular fluorescence complementation (BiFC), direct coupling analysis (DCA), RNA-sequencing, ROS and iron imaging, and single and double shRNA lines with suppressed mNT, NAF-1 and mNT/NAF-1 expression, that mNT and NAF-1 directly interact in mammalian cells and could function in the same cellular pathway. We further show using an in vitro cluster transfer assay that mNT can transfer its clusters to NAF-1. Our study highlights the possibility that mNT and NAF-1 function as part of an iron-sulfur (2Fe-2S) cluster relay to maintain the levels of iron and Fe-S clusters under control in the mitochondria of mammalian cells, thereby preventing the activation of apoptosis and/or autophagy and supporting cellular proliferation.
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spelling pubmed-53985362017-05-04 Interactions between mitoNEET and NAF-1 in cells Karmi, Ola Holt, Sarah H. Song, Luhua Tamir, Sagi Luo, Yuting Bai, Fang Adenwalla, Ammar Darash-Yahana, Merav Sohn, Yang-Sung Jennings, Patricia A. Azad, Rajeev K. Onuchic, Jose' N. Morcos, Faruck Nechushtai, Rachel Mittler, Ron PLoS One Research Article The NEET proteins mitoNEET (mNT) and nutrient-deprivation autophagy factor-1 (NAF-1) are required for cancer cell proliferation and resistance to oxidative stress. NAF-1 and mNT are also implicated in a number of other human pathologies including diabetes, neurodegeneration and cardiovascular disease, as well as in development, differentiation and aging. Previous studies suggested that mNT and NAF-1 could function in the same pathway in mammalian cells, preventing the over-accumulation of iron and reactive oxygen species (ROS) in mitochondria. Nevertheless, it is unknown whether these two proteins directly interact in cells, and how they mediate their function. Here we demonstrate, using yeast two-hybrid, in vivo bimolecular fluorescence complementation (BiFC), direct coupling analysis (DCA), RNA-sequencing, ROS and iron imaging, and single and double shRNA lines with suppressed mNT, NAF-1 and mNT/NAF-1 expression, that mNT and NAF-1 directly interact in mammalian cells and could function in the same cellular pathway. We further show using an in vitro cluster transfer assay that mNT can transfer its clusters to NAF-1. Our study highlights the possibility that mNT and NAF-1 function as part of an iron-sulfur (2Fe-2S) cluster relay to maintain the levels of iron and Fe-S clusters under control in the mitochondria of mammalian cells, thereby preventing the activation of apoptosis and/or autophagy and supporting cellular proliferation. Public Library of Science 2017-04-20 /pmc/articles/PMC5398536/ /pubmed/28426722 http://dx.doi.org/10.1371/journal.pone.0175796 Text en © 2017 Karmi et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Karmi, Ola
Holt, Sarah H.
Song, Luhua
Tamir, Sagi
Luo, Yuting
Bai, Fang
Adenwalla, Ammar
Darash-Yahana, Merav
Sohn, Yang-Sung
Jennings, Patricia A.
Azad, Rajeev K.
Onuchic, Jose' N.
Morcos, Faruck
Nechushtai, Rachel
Mittler, Ron
Interactions between mitoNEET and NAF-1 in cells
title Interactions between mitoNEET and NAF-1 in cells
title_full Interactions between mitoNEET and NAF-1 in cells
title_fullStr Interactions between mitoNEET and NAF-1 in cells
title_full_unstemmed Interactions between mitoNEET and NAF-1 in cells
title_short Interactions between mitoNEET and NAF-1 in cells
title_sort interactions between mitoneet and naf-1 in cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5398536/
https://www.ncbi.nlm.nih.gov/pubmed/28426722
http://dx.doi.org/10.1371/journal.pone.0175796
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