How to translate text using browser tools
23 April 2021 Functional roles of the chromatin remodeler SMARCA5 in mouse and bovine preimplantation embryos
Yan Shi, Panpan Zhao, Yanna Dang, Shuang Li, Lei Luo, Bingjie Hu, Shaohua Wang, Huanan Wang, Kun Zhang
Author Affiliations +
Abstract

Upon fertilization, extensive chromatin reprogramming occurs during preimplantation development. Growing evidence reveals species-dependent regulations of this process in mammals. ATP-dependent chromatin remodeling factor SMARCA5 (also known as SNF2H) is required for peri-implantation development in mice. However, the specific functional role of SMARCA5 in preimplantation development and if it is conserved among species remain unclear. Herein, comparative analysis of public RNA-seq datasets reveals that SMARCA5 is universally expressed during oocyte maturation and preimplantation development in mice, cattle, humans, and pigs with species-specific patterns. Immunostaining analysis further describes the temporal and spatial changes of SMARCA5 in both mouse and bovine models. siRNA-mediated SMARCA5 depletion reduces the developmental capability and compromises the specification and differentiation of inner cell mass in mouse preimplantation embryos. Indeed, OCT4 is not restricted into the inner cell mass and the formation of epiblast and primitive endoderm disturbed with reduced NANOG and SOX17 in SMARCA5-deficient blastocysts. RNA-seq analysis shows SMARCA5 depletion causes limited effects on the transcriptomics at the morula stage, however, dysregulates 402 genes, including genes involved in transcription regulation and cell proliferation at the blastocyst stage in mice. By comparison, SMARCA5 depletion does not affect the development through the blastocyst stage but significantly compromises the blastocyst quality in cattle. Primitive endoderm formation is greatly disrupted with reduced GATA6 in bovine blastocysts. Overall, our studies demonstrate the importance of SMARCA5 in fostering the preimplantation development in mice and cattle while there are species-specific effects.

Summary sentence

The chromatin remodeler SMARCA5 is required for preimplantation development with species-specific effects in mice and cattle.

© The Author(s) 2021. Published by Oxford University Press on behalf of Society for the Study of Reproduction. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com
Yan Shi, Panpan Zhao, Yanna Dang, Shuang Li, Lei Luo, Bingjie Hu, Shaohua Wang, Huanan Wang, and Kun Zhang "Functional roles of the chromatin remodeler SMARCA5 in mouse and bovine preimplantation embryos," Biology of Reproduction 105(2), 359-370, (23 April 2021). https://doi.org/10.1093/biolre/ioab081
Received: 15 February 2021; Accepted: 18 April 2021; Published: 23 April 2021
KEYWORDS
cattle
embryo
epiblast
preimplantation
primitive endoderm
SMARCA5
RIGHTS & PERMISSIONS
Get copyright permission
Back to Top