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Inhibition of ovarian steroidogenesis by cyclic GMP in a fly

G Manière1, E Vanhems, F Gautron

  • 1Université Bordeaux I, Laboratoire de Neuroendocrinologie des Insectes, Avenue des Facultés, F-33405 Talence Cedex, France.

Insights

Cyclic guanosine monophosphate (cGMP) antagonizes cyclic adenosine monophosphate (cAMP) to control ovarian steroidogenesis in blowflies. Nitric oxide (NO) may regulate cGMP levels, impacting ecdysteroid biosynthesis.

Area of Science:

  • Reproductive Biology
  • Insect Physiology
  • Endocrinology

Background:

  • Previous studies showed 3-isobutyl-1-methylxanthine (IBMX) increased cAMP but not steroidogenesis in blowfly ovaries.
  • This suggested a contradiction in the role of cAMP in ovarian steroidogenesis.

Purpose of the Study:

  • To resolve the contradiction regarding cAMP's role in blowfly ovarian steroidogenesis.
  • To investigate the role of cyclic guanosine monophosphate (cGMP) and its interaction with cyclic adenosine monophosphate (cAMP).

Main Methods:

  • Utilized IBMX, a phosphodiesterase inhibitor, and selective cGMP-specific PDE inhibitors.
  • Administered cGMP analogs and protein kinase G inhibitors.
  • Investigated the role of nitric oxide (NO) using an NO donor.

Main Results:

  • IBMX increased both cAMP and cGMP; cGMP antagonized cAMP's effects on steroidogenesis.
  • cGMP analogs inhibited steroid biosynthesis in both previtellogenic and vitellogenic ovaries.
  • cGMP levels peaked during vitellogenesis, correlating with decreased steroidogenesis, and effects were mediated by protein kinase G.
  • NO donors increased cGMP and decreased ecdysteroid biosynthesis.

Conclusions:

  • cGMP plays a significant negative regulatory role in invertebrate ovarian steroidogenesis, distinct from cAMP.
  • cGMP's effects are mediated by protein kinase G, not cGMP-regulated PDEs or ion channels.
  • Ovarian cGMP is likely regulated by paracrine/autocrine factors, with NO as a potential key regulator impacting ecdysteroid biosynthesis.

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