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Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots

The primary cell wall is a fundamental plant constituent that is flexible but sufficiently rigid to support the plant cell shape. Although many studies have demonstrated that reactive oxygen species (ROS) serve as important signaling messengers to modify the cell wall structure and affect cellular g...

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Autores principales: Chen, Chaofan, Zhang, Yi, Cai, Jianfa, Qiu, Yuting, Li, Lihong, Gao, Chengxu, Gao, Yiqun, Ke, Meiyu, Wu, Shengwei, Wei, Chuan, Chen, Jiaomei, Xu, Tongda, Friml, Jiří, Wang, Junqi, Li, Ruixi, Chao, Daiyin, Zhang, Baocai, Chen, Xu, Gao, Zhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10315306/
https://www.ncbi.nlm.nih.gov/pubmed/37010107
http://dx.doi.org/10.1093/plphys/kiad207
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author Chen, Chaofan
Zhang, Yi
Cai, Jianfa
Qiu, Yuting
Li, Lihong
Gao, Chengxu
Gao, Yiqun
Ke, Meiyu
Wu, Shengwei
Wei, Chuan
Chen, Jiaomei
Xu, Tongda
Friml, Jiří
Wang, Junqi
Li, Ruixi
Chao, Daiyin
Zhang, Baocai
Chen, Xu
Gao, Zhen
author_facet Chen, Chaofan
Zhang, Yi
Cai, Jianfa
Qiu, Yuting
Li, Lihong
Gao, Chengxu
Gao, Yiqun
Ke, Meiyu
Wu, Shengwei
Wei, Chuan
Chen, Jiaomei
Xu, Tongda
Friml, Jiří
Wang, Junqi
Li, Ruixi
Chao, Daiyin
Zhang, Baocai
Chen, Xu
Gao, Zhen
author_sort Chen, Chaofan
collection PubMed
description The primary cell wall is a fundamental plant constituent that is flexible but sufficiently rigid to support the plant cell shape. Although many studies have demonstrated that reactive oxygen species (ROS) serve as important signaling messengers to modify the cell wall structure and affect cellular growth, the regulatory mechanism underlying the spatial-temporal regulation of ROS activity for cell wall maintenance remains largely unclear. Here, we demonstrate the role of the Arabidopsis (Arabidopsis thaliana) multicopper oxidase-like protein skewed 5 (SKU5) and its homolog SKU5-similar 1 (SKS1) in root cell wall formation through modulating ROS homeostasis. Loss of SKU5 and SKS1 function resulted in aberrant division planes, protruding cell walls, ectopic deposition of iron, and reduced nicotinamide adeninedinucleotide phosphate (NADPH) oxidase-dependent ROS overproduction in the root epidermis–cortex and cortex–endodermis junctions. A decrease in ROS level or inhibition of NADPH oxidase activity rescued the cell wall defects of sku5 sks1 double mutants. SKU5 and SKS1 proteins were activated by iron treatment, and iron over-accumulated in the walls between the root epidermis and cortex cell layers of sku5 sks1. The glycosylphosphatidylinositol-anchored motif was crucial for membrane association and functionality of SKU5 and SKS1. Overall, our results identified SKU5 and SKS1 as regulators of ROS at the cell surface for regulation of cell wall structure and root cell growth.
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spelling pubmed-103153062023-07-04 Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots Chen, Chaofan Zhang, Yi Cai, Jianfa Qiu, Yuting Li, Lihong Gao, Chengxu Gao, Yiqun Ke, Meiyu Wu, Shengwei Wei, Chuan Chen, Jiaomei Xu, Tongda Friml, Jiří Wang, Junqi Li, Ruixi Chao, Daiyin Zhang, Baocai Chen, Xu Gao, Zhen Plant Physiol Research Article The primary cell wall is a fundamental plant constituent that is flexible but sufficiently rigid to support the plant cell shape. Although many studies have demonstrated that reactive oxygen species (ROS) serve as important signaling messengers to modify the cell wall structure and affect cellular growth, the regulatory mechanism underlying the spatial-temporal regulation of ROS activity for cell wall maintenance remains largely unclear. Here, we demonstrate the role of the Arabidopsis (Arabidopsis thaliana) multicopper oxidase-like protein skewed 5 (SKU5) and its homolog SKU5-similar 1 (SKS1) in root cell wall formation through modulating ROS homeostasis. Loss of SKU5 and SKS1 function resulted in aberrant division planes, protruding cell walls, ectopic deposition of iron, and reduced nicotinamide adeninedinucleotide phosphate (NADPH) oxidase-dependent ROS overproduction in the root epidermis–cortex and cortex–endodermis junctions. A decrease in ROS level or inhibition of NADPH oxidase activity rescued the cell wall defects of sku5 sks1 double mutants. SKU5 and SKS1 proteins were activated by iron treatment, and iron over-accumulated in the walls between the root epidermis and cortex cell layers of sku5 sks1. The glycosylphosphatidylinositol-anchored motif was crucial for membrane association and functionality of SKU5 and SKS1. Overall, our results identified SKU5 and SKS1 as regulators of ROS at the cell surface for regulation of cell wall structure and root cell growth. Oxford University Press 2023-04-03 /pmc/articles/PMC10315306/ /pubmed/37010107 http://dx.doi.org/10.1093/plphys/kiad207 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of American Society of Plant Biologists. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chen, Chaofan
Zhang, Yi
Cai, Jianfa
Qiu, Yuting
Li, Lihong
Gao, Chengxu
Gao, Yiqun
Ke, Meiyu
Wu, Shengwei
Wei, Chuan
Chen, Jiaomei
Xu, Tongda
Friml, Jiří
Wang, Junqi
Li, Ruixi
Chao, Daiyin
Zhang, Baocai
Chen, Xu
Gao, Zhen
Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots
title Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots
title_full Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots
title_fullStr Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots
title_full_unstemmed Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots
title_short Multi-copper oxidases SKU5 and SKS1 coordinate cell wall formation using apoplastic redox-based reactions in roots
title_sort multi-copper oxidases sku5 and sks1 coordinate cell wall formation using apoplastic redox-based reactions in roots
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10315306/
https://www.ncbi.nlm.nih.gov/pubmed/37010107
http://dx.doi.org/10.1093/plphys/kiad207
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