Autophagy in hypoxic ovary

Cell Mol Life Sci. 2019 Sep;76(17):3311-3322. doi: 10.1007/s00018-019-03122-4. Epub 2019 May 6.

Abstract

Oxygen deprivation affects human health by modulating system as well as cellular physiology. Hypoxia generates reactive oxygen species (ROS), causes oxidative stress and affects female reproductive health by altering ovarian as well as oocyte physiology in mammals. Hypoxic conditions lead to several degenerative changes by inducing various cell death pathways like autophagy, apoptosis and necrosis in the follicle of mammalian ovary. The encircling somatic cell death interrupts supply of nutrients to the oocyte and nutrient deprivation may result in the generation of ROS. Increased level of ROS could induce granulosa cells as well as oocyte autophagy. Although autophagy removes damaged proteins and subcellular organelles to maintain the cell survival, irreparable damages could induce cell death within intra-follicular microenvironment. Hypoxia-induced autophagy is operated through 5' AMP activated protein kinase-mammalian target of rapamycin, endoplasmic reticulum stress/unfolded protein response and protein kinase C delta-c-junN terminal kinase 1 pathways in a wide variety of somatic cell types. Similar to somatic cells, we propose that hypoxia may induce granulosa cell as well as oocyte autophagy and it could be responsible at least in part for germ cell elimination from mammalian ovary. Hypoxia-mediated germ cell depletion may cause several reproductive impairments including early menopause in mammals.

Keywords: Beclin 1; Follicular atresia; Granulosa cells; HIF-1α; Oocyte.

Publication types

  • Review

MeSH terms

  • Animals
  • Autophagy*
  • Beclin-1 / metabolism
  • Cell Hypoxia
  • Female
  • Granulosa Cells / cytology*
  • Granulosa Cells / metabolism
  • Hypoxia-Inducible Factor 1, alpha Subunit / metabolism
  • Oocytes / cytology
  • Oocytes / metabolism
  • Reactive Oxygen Species / metabolism

Substances

  • Beclin-1
  • Hypoxia-Inducible Factor 1, alpha Subunit
  • Reactive Oxygen Species