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Maternal Yes-Associated Protein Participates in Porcine Blastocyst Development via Modulation of Trophectoderm Epithelium Barrier Function

The establishment of a functional trophectoderm (TE) epithelium is an essential prerequisite for blastocyst formation and placentation. Transcription coactivator yes-associated protein (YAP), a downstream effector of the hippo signaling pathway, is required for specification of both the TE and epibl...

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Autores principales: Cao, Zubing, Xu, Tengteng, Tong, Xu, Wang, Yiqing, Zhang, Dandan, Gao, Di, Zhang, Ling, Ning, Wei, Qi, Xin, Ma, Yangyang, Yu, Tong, Knott, Jason G., Zhang, Yunhai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6952962/
https://www.ncbi.nlm.nih.gov/pubmed/31835702
http://dx.doi.org/10.3390/cells8121606
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author Cao, Zubing
Xu, Tengteng
Tong, Xu
Wang, Yiqing
Zhang, Dandan
Gao, Di
Zhang, Ling
Ning, Wei
Qi, Xin
Ma, Yangyang
Yu, Tong
Knott, Jason G.
Zhang, Yunhai
author_facet Cao, Zubing
Xu, Tengteng
Tong, Xu
Wang, Yiqing
Zhang, Dandan
Gao, Di
Zhang, Ling
Ning, Wei
Qi, Xin
Ma, Yangyang
Yu, Tong
Knott, Jason G.
Zhang, Yunhai
author_sort Cao, Zubing
collection PubMed
description The establishment of a functional trophectoderm (TE) epithelium is an essential prerequisite for blastocyst formation and placentation. Transcription coactivator yes-associated protein (YAP), a downstream effector of the hippo signaling pathway, is required for specification of both the TE and epiblast lineages in mice. However, the biological role of YAP in porcine blastocyst development is not known. Here, we report that maternally derived YAP protein is localized to both the cytoplasm and nuclei prior to the morula stage and is then predominantly localized to the TE nuclei in blastocysts. Functionally, maternal YAP knockdown severely impeded blastocyst formation and perturbed the allocation of the first two lineages. The treatment of embryos with verteporfin, a pharmacological inhibitor of YAP, faithfully recapitulated the phenotype observed in YAP deleted embryos. Mechanistically, we found that maternal YAP regulates multiple genes which are important for lineage commitment, tight junction assembly, and fluid accumulation. Consistent with the effects on tight junction gene expression, a permeability assay revealed that paracellular sealing was defective in the trophectoderm epithelium. Lastly, YAP knockdown in a single blastomere at the 2-cell stage revealed that the cellular progeny of the YAP(+) blastomere were sufficient to sustain blastocyst formation via direct complementation of the defective trophectoderm epithelium. In summary, these findings demonstrate that maternal YAP facilitates porcine blastocyst development through transcriptional regulation of key genes that are essential for lineage commitment, tight junction assembly, and fluid accumulation.
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spelling pubmed-69529622020-01-23 Maternal Yes-Associated Protein Participates in Porcine Blastocyst Development via Modulation of Trophectoderm Epithelium Barrier Function Cao, Zubing Xu, Tengteng Tong, Xu Wang, Yiqing Zhang, Dandan Gao, Di Zhang, Ling Ning, Wei Qi, Xin Ma, Yangyang Yu, Tong Knott, Jason G. Zhang, Yunhai Cells Article The establishment of a functional trophectoderm (TE) epithelium is an essential prerequisite for blastocyst formation and placentation. Transcription coactivator yes-associated protein (YAP), a downstream effector of the hippo signaling pathway, is required for specification of both the TE and epiblast lineages in mice. However, the biological role of YAP in porcine blastocyst development is not known. Here, we report that maternally derived YAP protein is localized to both the cytoplasm and nuclei prior to the morula stage and is then predominantly localized to the TE nuclei in blastocysts. Functionally, maternal YAP knockdown severely impeded blastocyst formation and perturbed the allocation of the first two lineages. The treatment of embryos with verteporfin, a pharmacological inhibitor of YAP, faithfully recapitulated the phenotype observed in YAP deleted embryos. Mechanistically, we found that maternal YAP regulates multiple genes which are important for lineage commitment, tight junction assembly, and fluid accumulation. Consistent with the effects on tight junction gene expression, a permeability assay revealed that paracellular sealing was defective in the trophectoderm epithelium. Lastly, YAP knockdown in a single blastomere at the 2-cell stage revealed that the cellular progeny of the YAP(+) blastomere were sufficient to sustain blastocyst formation via direct complementation of the defective trophectoderm epithelium. In summary, these findings demonstrate that maternal YAP facilitates porcine blastocyst development through transcriptional regulation of key genes that are essential for lineage commitment, tight junction assembly, and fluid accumulation. MDPI 2019-12-11 /pmc/articles/PMC6952962/ /pubmed/31835702 http://dx.doi.org/10.3390/cells8121606 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cao, Zubing
Xu, Tengteng
Tong, Xu
Wang, Yiqing
Zhang, Dandan
Gao, Di
Zhang, Ling
Ning, Wei
Qi, Xin
Ma, Yangyang
Yu, Tong
Knott, Jason G.
Zhang, Yunhai
Maternal Yes-Associated Protein Participates in Porcine Blastocyst Development via Modulation of Trophectoderm Epithelium Barrier Function
title Maternal Yes-Associated Protein Participates in Porcine Blastocyst Development via Modulation of Trophectoderm Epithelium Barrier Function
title_full Maternal Yes-Associated Protein Participates in Porcine Blastocyst Development via Modulation of Trophectoderm Epithelium Barrier Function
title_fullStr Maternal Yes-Associated Protein Participates in Porcine Blastocyst Development via Modulation of Trophectoderm Epithelium Barrier Function
title_full_unstemmed Maternal Yes-Associated Protein Participates in Porcine Blastocyst Development via Modulation of Trophectoderm Epithelium Barrier Function
title_short Maternal Yes-Associated Protein Participates in Porcine Blastocyst Development via Modulation of Trophectoderm Epithelium Barrier Function
title_sort maternal yes-associated protein participates in porcine blastocyst development via modulation of trophectoderm epithelium barrier function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6952962/
https://www.ncbi.nlm.nih.gov/pubmed/31835702
http://dx.doi.org/10.3390/cells8121606
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