Genes regulating programmed cell death are significantly upregulated in porcine immature oocytes

Author:

Stefańska Katarzyna1,Józkowiak Małgorzata2,Antosik Paweł3,Bukowska Dorota3,Celichowski Piotr1,Bruska Małgorzata4,Nowicki Michał1,Kempisty Bartosz145,Zakova Jana5,Machatkova Marie6,Jeseta Michal5

Affiliation:

1. Department of Histology and Embryology , Poznan University of Medical Sciences , Poznan , Poland

2. Department of Toxicology , Poznan University of Medical Sciences , Poznan , Poland

3. Veterinary Center , Nicolaus Copernicus University in Torun , Toruń , Poland

4. Department of Anatomy , Poznan University of Medical Sciences , Poznan , Poland

5. Department of Obstetrics and Gynecology , University Hospital and Masaryk University , Brno , Czech Republic

6. Veterinary Research Institute , Brno , Czech Republic

Abstract

Abstract Correct maturation of the oocyte is crucial for further fertilization and embryogenesis. It comprises of both nuclear and cytoplasmic maturation, during which the proteins, nutrients and mRNAs are assembled. Cumulus cells are connected with the oocyte via gap-junctions, which enable bi-directional transfer of molecules, forming cumulus-oocyte complex (COC). The expression pattern in CCs is thought to resemble the genes expressed in the oocyte. The CCs surrounding the gamete of high developmental competence have an increased expression of apoptotic markers. Therefore, our aim in this study was to determine whether any apoptosis-related genes are upregulated in porcine oocytes before or after IVM. We isolated COCs from 45 pubertal crossbred gilts, performed brilliant cresyl blue (BCB) staining and analyzed the gene expression pattern in oocytes before and after IVM with the use of microarray analysis. The results include 419 differentially expressed transcripts, 25 of which belong to „regulation of apoptosis” and „regulation of cell death” GO BP terms. This set of genes includes BCLAF1, EIF2AK3, KLF10, MIF, MAP3K1, NOTCH2, TXNIP and APP, all of which have been upregulated in immature porcine oocytes. Our results suggest that they play part in porcine oocyte maturation and could be used as potential markers of female gamete’s developmental competence. This knowledge could serve as a basis to improve ART in pigs.

Publisher

Walter de Gruyter GmbH

Subject

Cell Biology,Molecular Biology

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