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Dynamic Changes in the Proteome of Early Bovine Embryos Developed

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Specialty Cell Biology
Date 2022 Apr 7
PMID 35386205
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Abstract

Early embryo development is a dynamic process involving important molecular and structural changes leading to the embryonic genome activation (EGA) and early cell lineage differentiation. Our aim was to elucidate proteomic changes in bovine embryos developed . Eleven females were used as embryo donors and pools of embryos at the 4-6 cell, 8-12 cell, morula, compact morula and blastocyst stages were analyzed by nanoliquid chromatography coupled with label free quantitative mass spectrometry. A total of 2,757 proteins were identified, of which 1,950 were quantitatively analyzed. Principal component analysis of data showed a clear separation of embryo pools according to their developmental stage. The hierarchical clustering of differentially abundant proteins evidenced a first cluster of 626 proteins that increased in abundance during development and a second cluster of 400 proteins that decreased in abundance during development, with most significant changes at the time of EGA and blastocyst formation. The main pathways and processes overrepresented among upregulated proteins were RNA metabolism, protein translation and ribosome biogenesis, whereas Golgi vesicle transport and protein processing in endoplasmic reticulum were overrepresented among downregulated proteins. The pairwise comparison between stages allowed us to identify specific protein interaction networks and metabolic pathways at the time of EGA, morula compaction and blastocyst formation. This is the first comprehensive study of proteome dynamics in non-rodent mammalian embryos developed . These data provide a number of protein candidates that will be useful for further mechanistic and functional studies.

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References
1.
Ispada J, da Fonseca Junior A, de Lima C, Dos Santos E, Fontes P, Gouveia Nogueira M . Tricarboxylic Acid Cycle Metabolites as Mediators of DNA Methylation Reprogramming in Bovine Preimplantation Embryos. Int J Mol Sci. 2020; 21(18). PMC: 7558971. DOI: 10.3390/ijms21186868. View

2.
Jensen P, Beck H, Petersen T, Stroebech L, Schmidt M, Rasmussen L . Proteomic analysis of the early bovine yolk sac fluid and cells from the day 13 ovoid and elongated preimplantation embryos. Theriogenology. 2014; 82(5):657-67. DOI: 10.1016/j.theriogenology.2014.04.028. View

3.
Milazzotto M, de Lima C, da Fonseca A, Dos Santos E, Ispada J . Erasing gametes to write blastocysts: metabolism as the new player in epigenetic reprogramming. Anim Reprod. 2020; 17(3):e20200015. PMC: 7534565. DOI: 10.1590/1984-3143-AR2020-0015. View

4.
Goossens K, Van Soom A, Van Poucke M, Vandaele L, Vandesompele J, Van Zeveren A . Identification and expression analysis of genes associated with bovine blastocyst formation. BMC Dev Biol. 2007; 7:64. PMC: 1899496. DOI: 10.1186/1471-213X-7-64. View

5.
Seidel Jr G . Superovulation and embryo transfer in cattle. Science. 1981; 211(4480):351-8. DOI: 10.1126/science.7194504. View