Beta defensin 3 enhances ovarian granulosa cell proliferation and migration via ERK1/2 pathway in vitro†

Canying Liu1,2, Bo Pan2, Lu Yang3

  • 1Department of Life Science and Engineering, Foshan University, Foshan, China.

Biology of Reproduction
|November 17, 2018
PubMed

Insights

Antimicrobial peptides (AMPs) like porcine beta-defensin 3 (pBD3) stimulate ovarian granulosa cell proliferation and migration. This occurs via the ERK1/2 signaling pathway, suggesting AMPs have a role in mammalian ovarian function.

Area of Science:

  • Reproductive Biology
  • Immunology
  • Cell Biology

Background:

  • Antimicrobial peptides (AMPs) are key host defense molecules with known bactericidal and immunomodulatory functions.
  • The specific role of AMPs within the mammalian ovary, particularly during follicular development, remains largely unexplored.

Purpose of the Study:

  • To investigate the function of porcine beta-defensin 2 (pBD2) and porcine beta-defensin 3 (pBD3) in porcine granulosa cells.
  • To elucidate the potential involvement of the ERK1/2 signaling pathway in pBD3-mediated effects on granulosa cells.

Main Methods:

  • Porcine granulosa cells were cultured and treated with varying concentrations of pBD2 or pBD3.
  • Cell proliferation was assessed using mRNA expression of CCND1 and PCNA.
  • Cell migration was evaluated using a transwell assay.
  • Western blotting and a trans-reporting system were employed to analyze the ERK1/2 signaling pathway.

Main Results:

  • pBD3 significantly promoted granulosa cell proliferation in a dose-dependent manner, unlike pBD2.
  • pBD3 enhanced granulosa cell migration by 2.5-fold.
  • pBD3 upregulated CCND1 and PCNA mRNA levels.
  • pBD3 activated the ERK1/2 signaling pathway, which was essential for its effects on proliferation and migration.

Conclusions:

  • Porcine beta-defensin 3 plays a significant role in promoting granulosa cell proliferation and migration.
  • The ERK1/2 signaling pathway mediates the effects of pBD3 in ovarian granulosa cells.
  • These findings suggest a novel physiological role for antimicrobial peptides in mammalian ovarian function.

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