Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress.

Mitochondrial fusion and fission are dynamic processes regulated by the cellular microenvironment. Under nutrient starvation conditions, mitochondrial fusion is strengthened for energy conservation. We have previously shown that newborns of Ubl4A-deficient mice were more sensitive to starvation stre...

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Main Authors: Huaiyuan Zhang, Yu Zhao, Qi Yao, Zijing Ye, Adriana Mañas, Jialing Xiang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0242700
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spelling doaj-95c8bbc9f385427aa2f3e662f5ce1aca2021-03-04T12:28:12ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-011511e024270010.1371/journal.pone.0242700Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress.Huaiyuan ZhangYu ZhaoQi YaoZijing YeAdriana MañasJialing XiangMitochondrial fusion and fission are dynamic processes regulated by the cellular microenvironment. Under nutrient starvation conditions, mitochondrial fusion is strengthened for energy conservation. We have previously shown that newborns of Ubl4A-deficient mice were more sensitive to starvation stress with a higher rate of mortality than their wild-type littermates. Ubl4A binds with the actin-related protein Arp2/3 complex to synergize the actin branching process. Here, we showed that deficiency in Ubl4A resulted in mitochondrial fragmentation and apoptosis. A defect in the fusion process was the main cause of the mitochondrial fragmentation and resulted from a shortage of primed Arp2/3 complex pool around the mitochondria in the Ubl4A-deficient cells compared to the wild-type cells. As a result, the mitochondrial fusion process was not undertaken quickly enough to sustain starvation stress-induced cell death. Consequently, fragmented mitochondria lost their membrane integrity and ROS was accumulated to trigger caspase 9-dependent apoptosis before autophagic rescue. Furthermore, the wild-type Ubl4A, but not the Arp2/3-binding deficient mutant, could rescue the starvation-induced mitochondrial fragmentation phenotype. These results suggest that Ubl4A promotes the mitochondrial fusion process via Arp2/3 complex during the initial response to nutrient deprivation for cell survival.https://doi.org/10.1371/journal.pone.0242700
collection DOAJ
language English
format Article
sources DOAJ
author Huaiyuan Zhang
Yu Zhao
Qi Yao
Zijing Ye
Adriana Mañas
Jialing Xiang
spellingShingle Huaiyuan Zhang
Yu Zhao
Qi Yao
Zijing Ye
Adriana Mañas
Jialing Xiang
Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress.
PLoS ONE
author_facet Huaiyuan Zhang
Yu Zhao
Qi Yao
Zijing Ye
Adriana Mañas
Jialing Xiang
author_sort Huaiyuan Zhang
title Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress.
title_short Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress.
title_full Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress.
title_fullStr Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress.
title_full_unstemmed Ubl4A is critical for mitochondrial fusion process under nutrient deprivation stress.
title_sort ubl4a is critical for mitochondrial fusion process under nutrient deprivation stress.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description Mitochondrial fusion and fission are dynamic processes regulated by the cellular microenvironment. Under nutrient starvation conditions, mitochondrial fusion is strengthened for energy conservation. We have previously shown that newborns of Ubl4A-deficient mice were more sensitive to starvation stress with a higher rate of mortality than their wild-type littermates. Ubl4A binds with the actin-related protein Arp2/3 complex to synergize the actin branching process. Here, we showed that deficiency in Ubl4A resulted in mitochondrial fragmentation and apoptosis. A defect in the fusion process was the main cause of the mitochondrial fragmentation and resulted from a shortage of primed Arp2/3 complex pool around the mitochondria in the Ubl4A-deficient cells compared to the wild-type cells. As a result, the mitochondrial fusion process was not undertaken quickly enough to sustain starvation stress-induced cell death. Consequently, fragmented mitochondria lost their membrane integrity and ROS was accumulated to trigger caspase 9-dependent apoptosis before autophagic rescue. Furthermore, the wild-type Ubl4A, but not the Arp2/3-binding deficient mutant, could rescue the starvation-induced mitochondrial fragmentation phenotype. These results suggest that Ubl4A promotes the mitochondrial fusion process via Arp2/3 complex during the initial response to nutrient deprivation for cell survival.
url https://doi.org/10.1371/journal.pone.0242700
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