动物学研究2023,Vol.44Issue(1) :126-141.DOI:10.24272/j.issn.2095-8137.2022.397

Dusp1 regulates thermal tolerance limits in zebrafish by maintaining mitochondrial integrity

Ying Wang Hua-Min Wang Yan Zhou Ling-Hong Hu Jing-Ming Wan Ji-Hui Yang Hong-Bo Niu Xiu-Ping Hong Peng Hu Liang-Biao Chen
动物学研究2023,Vol.44Issue(1) :126-141.DOI:10.24272/j.issn.2095-8137.2022.397

Dusp1 regulates thermal tolerance limits in zebrafish by maintaining mitochondrial integrity

Ying Wang 1Hua-Min Wang 1Yan Zhou 1Ling-Hong Hu 1Jing-Ming Wan 1Ji-Hui Yang 1Hong-Bo Niu 1Xiu-Ping Hong 1Peng Hu 1Liang-Biao Chen1
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作者信息

  • 1. International Research Center for Marine Biosciences,Ministry of Science and Technology,Shanghai Ocean University,Shanghai 200120,China;Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources,Ministry of Education,Shanghai Ocean University,Shanghai 200120,China;Shanghai Collaborative Innovation for Aquatic Animal Genetics and Breeding,Shanghai Ocean University,Shanghai 200120,China
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Abstract

Temperature tolerance restricts the distribution of a species.However,the molecular and cellular mechanisms that set the thermal tolerance limits of an organism are poorly understood.Here,we report on the function of dual-specificity phosphatase 1(DUSP1)in thermal tolerance regulation.Notably,we found that dusp1-/-zebrafish grew normally but survived within a narrowed temperature range.The higher susceptibility of these mutant fish to both cold and heat challenges was attributed to accelerated cell death caused by aggravated mitochondrial dysfunction and over-production of reactive oxygen species in the gills.The DUSP1-MAPK-DRP1 axis was identified as a key pathway regulating these processes in both fish and human cells.These observations suggest that DUSP1 may play a role in maintaining mitochondrial integrity and redox homeostasis.We therefore propose that maintenance of cellular redox homeostasis may be a key mechanism for coping with cellular thermal stress and that the interplay between signaling pathways regulating redox homeostasis in the most thermosensitive tissue(i.e.,gills)may play an important role in setting the thermal tolerance limit of zebrafish.

Key words

Redox homeostasis/Zebrafish/Ectothermal/Mitochondrial fission/Thermal stress/MAPK

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基金项目

国家重点研发计划(2018YFD0900601)

国家自然科学基金(32130109)

出版年

2023
动物学研究
中国科学院昆明动物研究所 中国动物学会

动物学研究

CSTPCDCSCD
影响因子:0.582
ISSN:0254-5853
参考文献量2
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