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Aurora B prevents aneuploidy via MAD2 during the first mitotic cleavage in oxidatively damaged embryos

OBJECTIVES: A high rate of chromosome aneuploidy is exhibited in in vitro fertilization (IVF)‐derived embryos. Our previous experiments suggested that reactive oxygen species (ROS) can activate Mad2, a key protein in the spindle assembly checkpoint (SAC), and delay the first mitotic, providing time...

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Autores principales: Li, Jiena, Ha, Siyao, Li, Zhiling, Huang, Yue, Lin, En, Xiao, Wanfen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6797512/
https://www.ncbi.nlm.nih.gov/pubmed/31264311
http://dx.doi.org/10.1111/cpr.12657
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author Li, Jiena
Ha, Siyao
Li, Zhiling
Huang, Yue
Lin, En
Xiao, Wanfen
author_facet Li, Jiena
Ha, Siyao
Li, Zhiling
Huang, Yue
Lin, En
Xiao, Wanfen
author_sort Li, Jiena
collection PubMed
description OBJECTIVES: A high rate of chromosome aneuploidy is exhibited in in vitro fertilization (IVF)‐derived embryos. Our previous experiments suggested that reactive oxygen species (ROS) can activate Mad2, a key protein in the spindle assembly checkpoint (SAC), and delay the first mitotic, providing time to prevent the formation of embryonic aneuploidy. We aimed to determine whether mitotic kinase Aurora B was involved in the SAC function to prevent aneuploidy in IVF‐derived embryos. MATERIALS AND METHODS: We analysed aneuploidy formation and repair during embryo pre‐implantation via 4ʹ,6‐diamidino‐2‐phenylindole (DAPI) staining and karyotype analysis. We assessed Aurora B activation by immunofluorescence and investigated the effect of Aurora B inhibition on embryo injury‐related variables, such as embryonic development, ROS levels, mitochondrial membrane potential and γH2AX‐positive expression. RESULTS: We observed the expression and phosphorylation of Thr232 in Aurora B in oxidative stress‐induced zygotes. Moreover, inhibition of Aurora B caused chromosome mis‐segregation, abnormal spindle structures, abnormal chromosome number and reduced expression of Mad2 in IVF embryos. Our results suggest that Aurora B causes mitotic arrest and participates in SAC via Mad2 and H3S10P, which is required for self‐correction of aneuploidies. CONCLUSIONS: We demonstrate here that oxidative stress–induced DNA damage triggers Aurora B‐mediated activation of SAC, which prevents aneuploidy at the first mitotic cleavage in early mouse IVF embryos.
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spelling pubmed-67975122020-03-13 Aurora B prevents aneuploidy via MAD2 during the first mitotic cleavage in oxidatively damaged embryos Li, Jiena Ha, Siyao Li, Zhiling Huang, Yue Lin, En Xiao, Wanfen Cell Prolif Original Articles OBJECTIVES: A high rate of chromosome aneuploidy is exhibited in in vitro fertilization (IVF)‐derived embryos. Our previous experiments suggested that reactive oxygen species (ROS) can activate Mad2, a key protein in the spindle assembly checkpoint (SAC), and delay the first mitotic, providing time to prevent the formation of embryonic aneuploidy. We aimed to determine whether mitotic kinase Aurora B was involved in the SAC function to prevent aneuploidy in IVF‐derived embryos. MATERIALS AND METHODS: We analysed aneuploidy formation and repair during embryo pre‐implantation via 4ʹ,6‐diamidino‐2‐phenylindole (DAPI) staining and karyotype analysis. We assessed Aurora B activation by immunofluorescence and investigated the effect of Aurora B inhibition on embryo injury‐related variables, such as embryonic development, ROS levels, mitochondrial membrane potential and γH2AX‐positive expression. RESULTS: We observed the expression and phosphorylation of Thr232 in Aurora B in oxidative stress‐induced zygotes. Moreover, inhibition of Aurora B caused chromosome mis‐segregation, abnormal spindle structures, abnormal chromosome number and reduced expression of Mad2 in IVF embryos. Our results suggest that Aurora B causes mitotic arrest and participates in SAC via Mad2 and H3S10P, which is required for self‐correction of aneuploidies. CONCLUSIONS: We demonstrate here that oxidative stress–induced DNA damage triggers Aurora B‐mediated activation of SAC, which prevents aneuploidy at the first mitotic cleavage in early mouse IVF embryos. John Wiley and Sons Inc. 2019-07-01 /pmc/articles/PMC6797512/ /pubmed/31264311 http://dx.doi.org/10.1111/cpr.12657 Text en © 2019 The Authors. Cell Proliferation published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://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
Li, Jiena
Ha, Siyao
Li, Zhiling
Huang, Yue
Lin, En
Xiao, Wanfen
Aurora B prevents aneuploidy via MAD2 during the first mitotic cleavage in oxidatively damaged embryos
title Aurora B prevents aneuploidy via MAD2 during the first mitotic cleavage in oxidatively damaged embryos
title_full Aurora B prevents aneuploidy via MAD2 during the first mitotic cleavage in oxidatively damaged embryos
title_fullStr Aurora B prevents aneuploidy via MAD2 during the first mitotic cleavage in oxidatively damaged embryos
title_full_unstemmed Aurora B prevents aneuploidy via MAD2 during the first mitotic cleavage in oxidatively damaged embryos
title_short Aurora B prevents aneuploidy via MAD2 during the first mitotic cleavage in oxidatively damaged embryos
title_sort aurora b prevents aneuploidy via mad2 during the first mitotic cleavage in oxidatively damaged embryos
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6797512/
https://www.ncbi.nlm.nih.gov/pubmed/31264311
http://dx.doi.org/10.1111/cpr.12657
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