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Olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse Sertoli cells

Sertoli cells, by creating an immune-privileged and nutrition supporting environment, maintain mammalian spermatogenesis and thereby holds the heart of male fertility. Olaquindox, an effective feed additive in livestock industry, could potentially expose human into the risk of biological hazards due...

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Autores principales: Wu, Di, Huang, Chun-Jie, Jiao, Xiao-Fei, Ding, Zhi-Ming, Zhang, Jia-Yu, Chen, Fan, Wang, Yong-Sheng, Li, Xiang, Huo, Li-Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5687633/
https://www.ncbi.nlm.nih.gov/pubmed/29179463
http://dx.doi.org/10.18632/oncotarget.20289
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author Wu, Di
Huang, Chun-Jie
Jiao, Xiao-Fei
Ding, Zhi-Ming
Zhang, Jia-Yu
Chen, Fan
Wang, Yong-Sheng
Li, Xiang
Huo, Li-Jun
author_facet Wu, Di
Huang, Chun-Jie
Jiao, Xiao-Fei
Ding, Zhi-Ming
Zhang, Jia-Yu
Chen, Fan
Wang, Yong-Sheng
Li, Xiang
Huo, Li-Jun
author_sort Wu, Di
collection PubMed
description Sertoli cells, by creating an immune-privileged and nutrition supporting environment, maintain mammalian spermatogenesis and thereby holds the heart of male fertility. Olaquindox, an effective feed additive in livestock industry, could potentially expose human into the risk of biological hazards due to its genotoxicity and cytotoxicity, highlighting the significance of determining its bio-safety regarding human reproduction. Herein, we deciphered the detrimental effects of olaquindox on male fertility by mechanistically unraveling how olaquindox intervenes blood-testis barrier in mouse. Olaquindox (400 μg/ml) exposure significantly compromised tight junction permeability function, decreased or dislocated the junction proteins (e.g., ZO-1, occludin and N-cadherin) and attenuated mTORC2 signaling pathway in primary Sertoli cells. Furthermore, olaquindox disrupted F-actin architecture through interfering with the expression of actin branching protein complex (CDC42-N-WASP-Arp3) and actin bunding protein palladin. Olaquindox also triggered severely DNA damage and apoptosis while inhibiting autophagic flux in Sertoli cell presumably due to the exacerbated generation of reactive oxygen species (ROS). Pre-treatment with antioxidant N-acetylcysteine effectively ameliorated olaquindox-induced exhaustion of ZO-1 and N-Cadherin proteins, DNA damage and apoptosis. More significantly, olaquindox disrupted the epigenetic status in Sertoli cells with hypermethylation and concomitantly hypoacetylation of H3K9 and H3K27. Overall, our study determines olaquindox targets Sertoli cells to affect BTB function through tight junction proteins and F-actin orgnization, which might disrupt the process of spermatogenesis.
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spelling pubmed-56876332017-11-20 Olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse Sertoli cells Wu, Di Huang, Chun-Jie Jiao, Xiao-Fei Ding, Zhi-Ming Zhang, Jia-Yu Chen, Fan Wang, Yong-Sheng Li, Xiang Huo, Li-Jun Oncotarget Research Paper Sertoli cells, by creating an immune-privileged and nutrition supporting environment, maintain mammalian spermatogenesis and thereby holds the heart of male fertility. Olaquindox, an effective feed additive in livestock industry, could potentially expose human into the risk of biological hazards due to its genotoxicity and cytotoxicity, highlighting the significance of determining its bio-safety regarding human reproduction. Herein, we deciphered the detrimental effects of olaquindox on male fertility by mechanistically unraveling how olaquindox intervenes blood-testis barrier in mouse. Olaquindox (400 μg/ml) exposure significantly compromised tight junction permeability function, decreased or dislocated the junction proteins (e.g., ZO-1, occludin and N-cadherin) and attenuated mTORC2 signaling pathway in primary Sertoli cells. Furthermore, olaquindox disrupted F-actin architecture through interfering with the expression of actin branching protein complex (CDC42-N-WASP-Arp3) and actin bunding protein palladin. Olaquindox also triggered severely DNA damage and apoptosis while inhibiting autophagic flux in Sertoli cell presumably due to the exacerbated generation of reactive oxygen species (ROS). Pre-treatment with antioxidant N-acetylcysteine effectively ameliorated olaquindox-induced exhaustion of ZO-1 and N-Cadherin proteins, DNA damage and apoptosis. More significantly, olaquindox disrupted the epigenetic status in Sertoli cells with hypermethylation and concomitantly hypoacetylation of H3K9 and H3K27. Overall, our study determines olaquindox targets Sertoli cells to affect BTB function through tight junction proteins and F-actin orgnization, which might disrupt the process of spermatogenesis. Impact Journals LLC 2017-08-16 /pmc/articles/PMC5687633/ /pubmed/29179463 http://dx.doi.org/10.18632/oncotarget.20289 Text en Copyright: © 2017 Wu et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Wu, Di
Huang, Chun-Jie
Jiao, Xiao-Fei
Ding, Zhi-Ming
Zhang, Jia-Yu
Chen, Fan
Wang, Yong-Sheng
Li, Xiang
Huo, Li-Jun
Olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse Sertoli cells
title Olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse Sertoli cells
title_full Olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse Sertoli cells
title_fullStr Olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse Sertoli cells
title_full_unstemmed Olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse Sertoli cells
title_short Olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse Sertoli cells
title_sort olaquindox disrupts tight junction integrity and cytoskeleton architecture in mouse sertoli cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5687633/
https://www.ncbi.nlm.nih.gov/pubmed/29179463
http://dx.doi.org/10.18632/oncotarget.20289
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