Ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.

The interplay between signalling pathways and metabolism is crucial for tissue growth. Yet, it remains poorly understood. Here, we studied the consequences of modulating iron metabolism on the growth of Drosophila imaginal discs. We find that reducing the levels of the ferritin heavy chain in the la...

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Main Authors: Simone Mumbauer, Justine Pascual, Irina Kolotuev, Fisun Hamaratoglu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-09-01
Series:PLoS Genetics
Online Access:https://doi.org/10.1371/journal.pgen.1008396
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spelling doaj-a4d79892ae2b46b7920315b47f74dbbc2021-04-21T13:53:57ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042019-09-01159e100839610.1371/journal.pgen.1008396Ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.Simone MumbauerJustine PascualIrina KolotuevFisun HamaratogluThe interplay between signalling pathways and metabolism is crucial for tissue growth. Yet, it remains poorly understood. Here, we studied the consequences of modulating iron metabolism on the growth of Drosophila imaginal discs. We find that reducing the levels of the ferritin heavy chain in the larval wing discs leads to drastic growth defects, whereas light chain depletion causes only minor defects. Mutant cell clones for the heavy chain lack the ability to compete against Minute mutant cells. Reactive oxygen species (ROS) accumulate in wing discs with reduced heavy chain levels, causing severe mitochondrial defects and ferroptosis. Preventing ROS accumulation alleviates some of the growth defects. We propose that the increased expression of ferritin in hippo mutant cells may protect against ROS accumulation.https://doi.org/10.1371/journal.pgen.1008396
collection DOAJ
language English
format Article
sources DOAJ
author Simone Mumbauer
Justine Pascual
Irina Kolotuev
Fisun Hamaratoglu
spellingShingle Simone Mumbauer
Justine Pascual
Irina Kolotuev
Fisun Hamaratoglu
Ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.
PLoS Genetics
author_facet Simone Mumbauer
Justine Pascual
Irina Kolotuev
Fisun Hamaratoglu
author_sort Simone Mumbauer
title Ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.
title_short Ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.
title_full Ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.
title_fullStr Ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.
title_full_unstemmed Ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.
title_sort ferritin heavy chain protects the developing wing from reactive oxygen species and ferroptosis.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2019-09-01
description The interplay between signalling pathways and metabolism is crucial for tissue growth. Yet, it remains poorly understood. Here, we studied the consequences of modulating iron metabolism on the growth of Drosophila imaginal discs. We find that reducing the levels of the ferritin heavy chain in the larval wing discs leads to drastic growth defects, whereas light chain depletion causes only minor defects. Mutant cell clones for the heavy chain lack the ability to compete against Minute mutant cells. Reactive oxygen species (ROS) accumulate in wing discs with reduced heavy chain levels, causing severe mitochondrial defects and ferroptosis. Preventing ROS accumulation alleviates some of the growth defects. We propose that the increased expression of ferritin in hippo mutant cells may protect against ROS accumulation.
url https://doi.org/10.1371/journal.pgen.1008396
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AT irinakolotuev ferritinheavychainprotectsthedevelopingwingfromreactiveoxygenspeciesandferroptosis
AT fisunhamaratoglu ferritinheavychainprotectsthedevelopingwingfromreactiveoxygenspeciesandferroptosis
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