4.7 Article

BRE modulates granulosa cell death to affect ovarian follicle development and atresia in the mouse

Journal

CELL DEATH & DISEASE
Volume 8, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/cddis.2017.91

Keywords

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Categories

Funding

  1. NSFC grant [81571436, 31300963, 31401230]
  2. Science and Technology Planning Project of Guangdong Province [2016B030229002, 2014A020213008, 2014A020221091]
  3. Science and Technology Program of Guangzhou [201510010073, 201710010054]
  4. Guangdong Natural Science Foundation [2016A030311044]
  5. General Research Grant [14100315]
  6. Research Grant of Key Laboratory of Regenerative Medicine, Ministry of Education, Jinan University [ZSYX-M-00001, ZSYX-T-00001]

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The BRE (brain and reproductive expression) gene, highly expressed in nervous and reproductive system organs, plays an important role in modulating DNA damage repair under stress response and pathological conditions. Folliculogenesis, a process that ovarian follicle develops into maturation, is closely associated with the interaction between somatic granulosa cell and oocyte. However, the regulatory role of BRE in follicular development remains undetermined. In this context, we found that BRE is normally expressed in the oocytes and granulosa cells from the primordial follicle stage. There was a reduction in follicles number of BRE mutant (BRE-/-) mice. It was attributed to increase the follicular atresia in ovaries, as a result of retarded follicular development. We established that cell proliferation was inhibited, while apoptosis was markedly increased in the granulosa cells in the absence of BRE. In addition, expressions (gamma)-H2AX (marker for showing DNA double-strand breaks) and DNA damage-relevant genes are both upregulated in BRE-/- mice. In sum, these results suggest that the absence of BRE, deficiency in DNA damage repair, causes increased apoptosis in granulosa cells, which in turn induces follicular atresia in BRE-/- mice.

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