DCAF13 and RNF114 participate in the regulation of early porcine embryo development

Author:

da Silva Zigomar12,Glanzner Werner Giehl2,Gutierrez Karina2,de Macedo Mariana Priotto2,Guay Vanessa2,Currin Luke2,Carrillo Maria Elena Herrera2,Gonçalves Paulo Bayard Dias1,Bordignon Vilceu2ORCID

Affiliation:

1. Laboratory of Biotechnology and Animal Reproduction – BioRep, Federal University of Santa Maria, Santa Maria, RS, Brazil

2. Department of Animal Science, McGill University, Sainte-Anne-de-Bellevue, QC, Canada

Abstract

In brief Ubiquitination plays a pivotal role in a multitude of cellular functions; however, the precise contributions of various ubiquitin ligases in governing early developmental processes remain largely unexplored. This study revealed that the E3 ubiquitin ligases DCAF13 and RNF114 are both necessary for the normal regulation of early porcine embryo development. Abstract Ubiquitylation is required for normal regulation of many biological functions by modulating several protein facets such as structure, stability, interaction, localization, and degradation. In this study, we explored the roles of two E3 ubiquitin ligases (E3s), the DDB1- and CUL4-associated factor 13 (DCAF13) and the Ring finger protein 114 (RNF114), in the regulation of porcine embryo development. Attenuation of DCAF13 mRNA decreased embryo development at the blastocyst stage, while the development of RNF114-attenuated embryos was not significantly different than that of control embryos. The average number of cells per blastocyst was decreased in DCAF13-attenuated embryos and increased in RNF114-attenuated embryos compared to controls. The relative mRNA abundance of the histone methyltransferase SUV39H1, which regulates histone H3 lysine 9 trimethylation (H3K9me3), was increased in both DCAF13- and RNF114-attenuated embryos, but nuclear immunofluorescence signal for H3K9me3 on day 3 embryos was not significantly altered between attenuated and control embryos. Nuclear immunofluorescence signal for H3K4m3 was decreased in DCAF13-attenuated embryos, but it was increased in RNF114-attenuated embryos compared to controls. Attenuation of DCAF13 and RNF114 mRNAs increased transcript levels for the DNA recombinase RAD51 and decreased expression of phosphorylated histone H2A.X (γH2AX), which suggests an impact on DNA damage repair. In addition, lower mRNA expression of the lysine demethylases 5B (KDM5B) and 5C (KDM5C), both involved in embryo genome activation and DNA repair, was detected in DCAF13-attenuated embryos. These findings indicated that both DCAF13 and RNF114 have important roles in the regulation of the early development of porcine embryos.

Publisher

Bioscientifica

Subject

Cell Biology,Obstetrics and Gynecology,Endocrinology,Embryology,Reproductive Medicine

Reference52 articles.

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3. OCT4 activates a Suv39h1-repressive antisense lncRNA to couple histone H3 lysine 9 methylation to pluripotency;Bernard,2022

4. Coupling DNA damage and repair: an essential safeguard during programmed DNA double-strand breaks?;Bétermier,2020

5. The incidence of DNA double-strand breaks is higher in late-cleaving and less developmentally competent porcine embryos;Bohrer,2015

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