Cargando…

Identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing

Differentiated somatic cells can be reprogrammed into totipotent embryos through somatic cell nuclear transfer. However, most cloned embryos arrest at early stages and the underlying molecular mechanism remains largely unexplored. Here, we first developed a somatic cell nuclear transfer embryo biops...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Wenqiang, Liu, Xiaoyu, Wang, Chenfei, Gao, Yawei, Gao, Rui, Kou, Xiaochen, Zhao, Yanhong, Li, Jingyi, Wu, You, Xiu, Wenchao, Wang, Su, Yin, Jiqing, Liu, Wei, Cai, Tao, Wang, Hong, Zhang, Yong, Gao, Shaorong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4897595/
https://www.ncbi.nlm.nih.gov/pubmed/27462457
http://dx.doi.org/10.1038/celldisc.2016.10
_version_ 1782436194244624384
author Liu, Wenqiang
Liu, Xiaoyu
Wang, Chenfei
Gao, Yawei
Gao, Rui
Kou, Xiaochen
Zhao, Yanhong
Li, Jingyi
Wu, You
Xiu, Wenchao
Wang, Su
Yin, Jiqing
Liu, Wei
Cai, Tao
Wang, Hong
Zhang, Yong
Gao, Shaorong
author_facet Liu, Wenqiang
Liu, Xiaoyu
Wang, Chenfei
Gao, Yawei
Gao, Rui
Kou, Xiaochen
Zhao, Yanhong
Li, Jingyi
Wu, You
Xiu, Wenchao
Wang, Su
Yin, Jiqing
Liu, Wei
Cai, Tao
Wang, Hong
Zhang, Yong
Gao, Shaorong
author_sort Liu, Wenqiang
collection PubMed
description Differentiated somatic cells can be reprogrammed into totipotent embryos through somatic cell nuclear transfer. However, most cloned embryos arrest at early stages and the underlying molecular mechanism remains largely unexplored. Here, we first developed a somatic cell nuclear transfer embryo biopsy system at two- or four-cell stage, which allows us to trace the developmental fate of the biopsied embryos precisely. Then, through single-cell transcriptome sequencing of somatic cell nuclear transfer embryos with different developmental fates, we identified that inactivation of Kdm4b, a histone H3 lysine 9 trimethylation demethylase, functions as a barrier for two-cell arrest of cloned embryos. Moreover, we discovered that inactivation of another histone demethylase Kdm5b accounts for the arrest of cloned embryos at the four-cell stage through single-cell analysis. Co-injection of Kdm4b and Kdm5b can restore transcriptional profiles of somatic cell nuclear transfer embryos and greatly improve the blastocyst development (over 95%) as well as the production of cloned mice. Our study therefore provides an effective approach to identify key factors responsible for the developmental arrest of somatic cell cloned embryos.
format Online
Article
Text
id pubmed-4897595
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-48975952016-07-26 Identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing Liu, Wenqiang Liu, Xiaoyu Wang, Chenfei Gao, Yawei Gao, Rui Kou, Xiaochen Zhao, Yanhong Li, Jingyi Wu, You Xiu, Wenchao Wang, Su Yin, Jiqing Liu, Wei Cai, Tao Wang, Hong Zhang, Yong Gao, Shaorong Cell Discov Article Differentiated somatic cells can be reprogrammed into totipotent embryos through somatic cell nuclear transfer. However, most cloned embryos arrest at early stages and the underlying molecular mechanism remains largely unexplored. Here, we first developed a somatic cell nuclear transfer embryo biopsy system at two- or four-cell stage, which allows us to trace the developmental fate of the biopsied embryos precisely. Then, through single-cell transcriptome sequencing of somatic cell nuclear transfer embryos with different developmental fates, we identified that inactivation of Kdm4b, a histone H3 lysine 9 trimethylation demethylase, functions as a barrier for two-cell arrest of cloned embryos. Moreover, we discovered that inactivation of another histone demethylase Kdm5b accounts for the arrest of cloned embryos at the four-cell stage through single-cell analysis. Co-injection of Kdm4b and Kdm5b can restore transcriptional profiles of somatic cell nuclear transfer embryos and greatly improve the blastocyst development (over 95%) as well as the production of cloned mice. Our study therefore provides an effective approach to identify key factors responsible for the developmental arrest of somatic cell cloned embryos. Nature Publishing Group 2016-06-07 /pmc/articles/PMC4897595/ /pubmed/27462457 http://dx.doi.org/10.1038/celldisc.2016.10 Text en Copyright © 2016 SIBS, CAS http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Liu, Wenqiang
Liu, Xiaoyu
Wang, Chenfei
Gao, Yawei
Gao, Rui
Kou, Xiaochen
Zhao, Yanhong
Li, Jingyi
Wu, You
Xiu, Wenchao
Wang, Su
Yin, Jiqing
Liu, Wei
Cai, Tao
Wang, Hong
Zhang, Yong
Gao, Shaorong
Identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing
title Identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing
title_full Identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing
title_fullStr Identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing
title_full_unstemmed Identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing
title_short Identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing
title_sort identification of key factors conquering developmental arrest of somatic cell cloned embryos by combining embryo biopsy and single-cell sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4897595/
https://www.ncbi.nlm.nih.gov/pubmed/27462457
http://dx.doi.org/10.1038/celldisc.2016.10
work_keys_str_mv AT liuwenqiang identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT liuxiaoyu identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT wangchenfei identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT gaoyawei identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT gaorui identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT kouxiaochen identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT zhaoyanhong identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT lijingyi identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT wuyou identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT xiuwenchao identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT wangsu identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT yinjiqing identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT liuwei identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT caitao identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT wanghong identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT zhangyong identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing
AT gaoshaorong identificationofkeyfactorsconqueringdevelopmentalarrestofsomaticcellclonedembryosbycombiningembryobiopsyandsinglecellsequencing