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SLC39A5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis

High myopia is one of the leading causes of visual impairment worldwide with high heritability. We have previously identified the genetic contribution of SLC39A5 to nonsyndromic high myopia and demonstrated that disease‐related mutations of SLC39A5 dysregulate the TGF‐β pathway. In this study, the m...

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Autores principales: Dong, Shanshan, Tian, Qi, Zhu, Tengfei, Wang, Kangli, Lei, Ganting, Liu, Yanling, Xiong, Haofeng, Shen, Lu, Wang, Meng, Zhao, Rongjuan, Wu, Huidan, Li, Bin, Zhang, Qiumeng, Yao, Yujun, Guo, Hui, Xia, Kun, Xia, Lu, Hu, Zhengmao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8419198/
https://www.ncbi.nlm.nih.gov/pubmed/34302427
http://dx.doi.org/10.1111/jcmm.16803
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author Dong, Shanshan
Tian, Qi
Zhu, Tengfei
Wang, Kangli
Lei, Ganting
Liu, Yanling
Xiong, Haofeng
Shen, Lu
Wang, Meng
Zhao, Rongjuan
Wu, Huidan
Li, Bin
Zhang, Qiumeng
Yao, Yujun
Guo, Hui
Xia, Kun
Xia, Lu
Hu, Zhengmao
author_facet Dong, Shanshan
Tian, Qi
Zhu, Tengfei
Wang, Kangli
Lei, Ganting
Liu, Yanling
Xiong, Haofeng
Shen, Lu
Wang, Meng
Zhao, Rongjuan
Wu, Huidan
Li, Bin
Zhang, Qiumeng
Yao, Yujun
Guo, Hui
Xia, Kun
Xia, Lu
Hu, Zhengmao
author_sort Dong, Shanshan
collection PubMed
description High myopia is one of the leading causes of visual impairment worldwide with high heritability. We have previously identified the genetic contribution of SLC39A5 to nonsyndromic high myopia and demonstrated that disease‐related mutations of SLC39A5 dysregulate the TGF‐β pathway. In this study, the mechanisms underlying SLC39A5 involvement in the pathogenesis of high myopia are determined. We observed the morphogenesis and migration abnormalities of the SLC39A5 knockout (KO) human embryonic kidney cells (HEK293) and found a significant injury of ECM constituents. RNA‐seq and qRT‐PCR revealed the transcription decrease in COL1A1, COL2A1, COL4A1, FN1 and LAMA1 in the KO cells. Further, we demonstrated that TGF‐β signalling, the regulator of ECM, was inhibited in SLC39A5 depletion situation, wherein the activation of receptor Smads (R‐Smads) via phosphorylation was greatly blocked. SLC39A5 re‐expression reversed the phenotype of TGF‐β signalling and ECM synthesis in the KO cells. The fact that TGF‐β signalling was zinc‐regulated and that SLC39A5 was identified as a zinc transporter urged us to check the involvement of intracellular zinc in TGF‐β signalling impairment. Finally, we determined that insufficient zinc chelation destabilized Smad proteins, which naturally inhibited TGF‐β signalling. Overall, the SLC39A5 depletion–induced zinc deficiency destabilized Smad proteins, which inhibited the TGF‐β signalling and downstream ECM synthesis, thus contributing to the pathogenesis of high myopia. This discovery provides a deep insight into myopic development.
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spelling pubmed-84191982021-09-08 SLC39A5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis Dong, Shanshan Tian, Qi Zhu, Tengfei Wang, Kangli Lei, Ganting Liu, Yanling Xiong, Haofeng Shen, Lu Wang, Meng Zhao, Rongjuan Wu, Huidan Li, Bin Zhang, Qiumeng Yao, Yujun Guo, Hui Xia, Kun Xia, Lu Hu, Zhengmao J Cell Mol Med Original Articles High myopia is one of the leading causes of visual impairment worldwide with high heritability. We have previously identified the genetic contribution of SLC39A5 to nonsyndromic high myopia and demonstrated that disease‐related mutations of SLC39A5 dysregulate the TGF‐β pathway. In this study, the mechanisms underlying SLC39A5 involvement in the pathogenesis of high myopia are determined. We observed the morphogenesis and migration abnormalities of the SLC39A5 knockout (KO) human embryonic kidney cells (HEK293) and found a significant injury of ECM constituents. RNA‐seq and qRT‐PCR revealed the transcription decrease in COL1A1, COL2A1, COL4A1, FN1 and LAMA1 in the KO cells. Further, we demonstrated that TGF‐β signalling, the regulator of ECM, was inhibited in SLC39A5 depletion situation, wherein the activation of receptor Smads (R‐Smads) via phosphorylation was greatly blocked. SLC39A5 re‐expression reversed the phenotype of TGF‐β signalling and ECM synthesis in the KO cells. The fact that TGF‐β signalling was zinc‐regulated and that SLC39A5 was identified as a zinc transporter urged us to check the involvement of intracellular zinc in TGF‐β signalling impairment. Finally, we determined that insufficient zinc chelation destabilized Smad proteins, which naturally inhibited TGF‐β signalling. Overall, the SLC39A5 depletion–induced zinc deficiency destabilized Smad proteins, which inhibited the TGF‐β signalling and downstream ECM synthesis, thus contributing to the pathogenesis of high myopia. This discovery provides a deep insight into myopic development. John Wiley and Sons Inc. 2021-07-24 2021-09 /pmc/articles/PMC8419198/ /pubmed/34302427 http://dx.doi.org/10.1111/jcmm.16803 Text en © 2021 The Authors. Journal of Cellular and Molecular Medicine published by Foundation for Cellular and Molecular Medicine and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Dong, Shanshan
Tian, Qi
Zhu, Tengfei
Wang, Kangli
Lei, Ganting
Liu, Yanling
Xiong, Haofeng
Shen, Lu
Wang, Meng
Zhao, Rongjuan
Wu, Huidan
Li, Bin
Zhang, Qiumeng
Yao, Yujun
Guo, Hui
Xia, Kun
Xia, Lu
Hu, Zhengmao
SLC39A5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis
title SLC39A5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis
title_full SLC39A5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis
title_fullStr SLC39A5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis
title_full_unstemmed SLC39A5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis
title_short SLC39A5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis
title_sort slc39a5 dysfunction impairs extracellular matrix synthesis in high myopia pathogenesis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8419198/
https://www.ncbi.nlm.nih.gov/pubmed/34302427
http://dx.doi.org/10.1111/jcmm.16803
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