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Core Binding Factor-β Knockdown Alters Ovarian Gene Expression and Function in the Mouse

Authors :
Misung Jo
Ichiro Taniuchi
Birendra Mishra
Thomas E. Curry
Ji Yeon Park
Jan A. Gossen
Kalin Wilson
Source :
Molecular Endocrinology. 30:733-747
Publication Year :
2016
Publisher :
The Endocrine Society, 2016.

Abstract

Core binding factor (CBF) is a heterodimeric transcription factor complex composed of a DNA-binding subunit, one of three runt-related transcription factor (RUNX) factors, and a non-DNA binding subunit, CBFβ. CBFβ is critical for DNA binding and stability of the CBF transcription factor complex. In the ovary, the LH surge increases the expression of Runx1 and Runx2 in periovulatory follicles, implicating a role for CBFs in the periovulatory process. The present study investigated the functional significance of CBFs (RUNX1/CBFβ and RUNX2/CBFβ) in the ovary by examining the ovarian phenotype of granulosa cell-specific CBFβ knockdown mice; CBFβ f/f * Cyp19 cre. The mutant female mice exhibited significant reductions in fertility, with smaller litter sizes, decreased progesterone during gestation, and fewer cumulus oocyte complexes collected after an induced superovulation. RNA sequencing and transcriptome assembly revealed altered expression of more than 200 mRNA transcripts in the granulosa cells of Cbfb knockdown mice after human chorionic gonadotropin stimulation in vitro. Among the affected transcripts are known regulators of ovulation and luteinization including Sfrp4, Sgk1, Lhcgr, Prlr, Wnt4, and Edn2 as well as many genes not yet characterized in the ovary. Cbfβ knockdown mice also exhibited decreased expression of key genes within the corpora lutea and morphological changes in the ovarian structure, including the presence of large antral follicles well into the luteal phase. Overall, these data suggest a role for CBFs as significant regulators of gene expression, ovulatory processes, and luteal development in the ovary.

Details

ISSN :
19449917 and 08888809
Volume :
30
Database :
OpenAIRE
Journal :
Molecular Endocrinology
Accession number :
edsair.doi.dedup.....9a089b35e1fce1c7ea2edd1c9f14f9fb
Full Text :
https://doi.org/10.1210/me.2015-1312