Cargando…

Phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development

Maternal stress has been associated with poor birth outcomes, including preterm birth, infant mortality, and low birth weight. Bone development disorders in the embryo as a result of maternal stress are believed to be mediated through oxidative stress damage. Various species of free radicals, such a...

Descripción completa

Detalles Bibliográficos
Autores principales: Niu, Jie, Wan, Xin, Yu, Gui-Yuan, Jiang, Shan, Yi, Ruo-Nan, Wu, Yan-Ping, Ouyang, Shu-Hua, Liang, Lei, Kurihara, Hiroshi, Sun, Wan-Yang, Zhu, Xiao-Feng, Zhang, Rong-Hua, Cao, Yun-Feng, He, Jian-Bo, Duan, Wen-Jun, Li, Yi-Fang, He, Rong-Rong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9440361/
https://www.ncbi.nlm.nih.gov/pubmed/36037588
http://dx.doi.org/10.1016/j.redox.2022.102437
_version_ 1784782331069857792
author Niu, Jie
Wan, Xin
Yu, Gui-Yuan
Jiang, Shan
Yi, Ruo-Nan
Wu, Yan-Ping
Ouyang, Shu-Hua
Liang, Lei
Kurihara, Hiroshi
Sun, Wan-Yang
Zhu, Xiao-Feng
Zhang, Rong-Hua
Cao, Yun-Feng
He, Jian-Bo
Duan, Wen-Jun
Li, Yi-Fang
He, Rong-Rong
author_facet Niu, Jie
Wan, Xin
Yu, Gui-Yuan
Jiang, Shan
Yi, Ruo-Nan
Wu, Yan-Ping
Ouyang, Shu-Hua
Liang, Lei
Kurihara, Hiroshi
Sun, Wan-Yang
Zhu, Xiao-Feng
Zhang, Rong-Hua
Cao, Yun-Feng
He, Jian-Bo
Duan, Wen-Jun
Li, Yi-Fang
He, Rong-Rong
author_sort Niu, Jie
collection PubMed
description Maternal stress has been associated with poor birth outcomes, including preterm birth, infant mortality, and low birth weight. Bone development disorders in the embryo as a result of maternal stress are believed to be mediated through oxidative stress damage. Various species of free radicals, such as alkoxyl radicals, can be formed through endogenous redox response or exogenous stimuli in the womb and transmitted to embryos. Yet, whether these free radicals lead to abnormal fetal bone development is unclear. Here, we demonstrate prenatal bone growth retardation and ferroptosis-related signals of chondrocytes were induced by classic alkoxyl radical generators. We also show that alkoxyl radicals lead to significant accumulation of oxidized phospholipids in chondrocytes, through the iron-mediated Fenton reaction in embryos. We further demonstrate a role for the lipid peroxidation end product, 4-HNE, which forms adducts with the pivotal chondrogenesis transcription factor SOX9, leading to its degradation, therefore dampening chondrogenesis. Our data define a critical role for phospholipid peroxidation in alkoxyl radicals-evoked abnormal chondrogenesis, and pinpoint it being a precise target for treating oxidative stress-related bone development disorders.
format Online
Article
Text
id pubmed-9440361
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-94403612022-09-04 Phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development Niu, Jie Wan, Xin Yu, Gui-Yuan Jiang, Shan Yi, Ruo-Nan Wu, Yan-Ping Ouyang, Shu-Hua Liang, Lei Kurihara, Hiroshi Sun, Wan-Yang Zhu, Xiao-Feng Zhang, Rong-Hua Cao, Yun-Feng He, Jian-Bo Duan, Wen-Jun Li, Yi-Fang He, Rong-Rong Redox Biol Research Paper Maternal stress has been associated with poor birth outcomes, including preterm birth, infant mortality, and low birth weight. Bone development disorders in the embryo as a result of maternal stress are believed to be mediated through oxidative stress damage. Various species of free radicals, such as alkoxyl radicals, can be formed through endogenous redox response or exogenous stimuli in the womb and transmitted to embryos. Yet, whether these free radicals lead to abnormal fetal bone development is unclear. Here, we demonstrate prenatal bone growth retardation and ferroptosis-related signals of chondrocytes were induced by classic alkoxyl radical generators. We also show that alkoxyl radicals lead to significant accumulation of oxidized phospholipids in chondrocytes, through the iron-mediated Fenton reaction in embryos. We further demonstrate a role for the lipid peroxidation end product, 4-HNE, which forms adducts with the pivotal chondrogenesis transcription factor SOX9, leading to its degradation, therefore dampening chondrogenesis. Our data define a critical role for phospholipid peroxidation in alkoxyl radicals-evoked abnormal chondrogenesis, and pinpoint it being a precise target for treating oxidative stress-related bone development disorders. Elsevier 2022-08-20 /pmc/articles/PMC9440361/ /pubmed/36037588 http://dx.doi.org/10.1016/j.redox.2022.102437 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Niu, Jie
Wan, Xin
Yu, Gui-Yuan
Jiang, Shan
Yi, Ruo-Nan
Wu, Yan-Ping
Ouyang, Shu-Hua
Liang, Lei
Kurihara, Hiroshi
Sun, Wan-Yang
Zhu, Xiao-Feng
Zhang, Rong-Hua
Cao, Yun-Feng
He, Jian-Bo
Duan, Wen-Jun
Li, Yi-Fang
He, Rong-Rong
Phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development
title Phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development
title_full Phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development
title_fullStr Phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development
title_full_unstemmed Phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development
title_short Phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development
title_sort phospholipid peroxidation-driven modification of chondrogenic transcription factor mediates alkoxyl radicals-induced impairment of embryonic bone development
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9440361/
https://www.ncbi.nlm.nih.gov/pubmed/36037588
http://dx.doi.org/10.1016/j.redox.2022.102437
work_keys_str_mv AT niujie phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT wanxin phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT yuguiyuan phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT jiangshan phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT yiruonan phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT wuyanping phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT ouyangshuhua phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT lianglei phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT kuriharahiroshi phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT sunwanyang phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT zhuxiaofeng phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT zhangronghua phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT caoyunfeng phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT hejianbo phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT duanwenjun phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT liyifang phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment
AT herongrong phospholipidperoxidationdrivenmodificationofchondrogenictranscriptionfactormediatesalkoxylradicalsinducedimpairmentofembryonicbonedevelopment