Trimethylation profile of histones H3 lysine 4 and 9 in late preantral and early antral caprine follicles grown in vivo versus in vitro in the presence of anethole

Author:

Silva Ana F. B.1ORCID,Morais Ana N. P.1ORCID,Lima Laritza F.1ORCID,Ferreira Anna C. A.1ORCID,Silva Renato F.1ORCID,Sá Naiza A. R.1ORCID,Kumar Satish2ORCID,Oliveira Ariclécio C.3ORCID,Alves Benner G.4ORCID,Rodrigues Ana P. R.1ORCID,Gastal Eduardo L.5ORCID,Bordignon Vilceu6ORCID,Figueiredo José R.1ORCID

Affiliation:

1. Laboratory of Manipulation of Oocytes and Preantral Follicles, Faculty of Veterinary Medicine State University of Ceará Fortaleza Ceará Brazil

2. Postgraduate Program in Veterinary Sciences, Faculty of Veterinary Medicine State University of Ceará Fortaleza Ceará Brazil

3. Superior Institute of Biomedical Science State University of Ceará Fortaleza Ceará Brazil

4. Postgraduate Program in Animal Bioscience Federal University of Goiás Jataí Goiás Brazil

5. Animal Science, School of Agricultural Sciences Southern Illinois University Carbondale Illinois USA

6. Department of Animal Science McGill University Sainte‐Anne‐de‐Bellevue Quebec Canada

Abstract

AbstractThis study assessed the histones methylation profile (H3K4me3 and H3K9me3) in late preantral (PA) and early antral (EA) caprine follicles grown in vivo and in vitro, and the anethole effect during in vitro culture of PA follicles. Uncultured in vivo–grown follicles (PA, n = 64; EA, n = 73) were used as controls to assess the methylation profile and genes' expression related to apoptosis cascade (BAX, proapoptotic; BCL2, antiapoptotic), steroidogenesis (CYP17, CYP19A1), and demethylation (KDM1AX1, KDM1AX2, KDM3A). The isolated PA follicles (n = 174) were cultured in vitro for 6 days in α‐MEM+ in either absence (control) or presence of anethole. After culture, EA follicles were evaluated for methylation, mRNA abundance, and morphometry. Follicle diameter increased after culture, regardless of treatment. The methylation profile and the mRNA abundance were similar between in vivo–grown PA and EA follicles. Anethole treatment led to higher H3K4me3 fluorescence intensity in EA follicles. The mRNA abundances of BAX, CYP17, and CYP19A1 were higher, and BCL2 and KDM3A were lower in in vitro–grown EA follicles than in vivo–grown follicles. In conclusion, in vitro follicle culture affected H3K4me3 fluorescence intensity, mRNA abundance of apoptotic genes, and steroidogenic and demethylase enzymes compared with in vivo–grown follicles.

Publisher

Wiley

Subject

Cell Biology,Developmental Biology,Genetics

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