Microglia-derived pronerve growth factor promotes photoreceptor cell death via p75 neurotrophin receptor

Bhooma Srinivasan1, Criselda H Roque, Barbara L Hempstead

  • 1Department of Cell Biology and Genetics, University of North Texas Health Science Center, Fort Worth, Texas 76107, USA.

Insights

Activated microglia release pro-nerve growth factor (NGF), a protein that promotes photoreceptor cell death in retinal degenerative diseases. This suggests improper NGF processing contributes to vision loss.

Area of Science:

  • Neuroscience
  • Ophthalmology
  • Cell Biology

Background:

  • Microglia-derived nerve growth factor (NGF) has been implicated in programmed cell death in the developing retina.
  • The role of microglia and NGF in degenerative retinal diseases remains unclear.

Purpose of the Study:

  • To investigate the role of microglia-derived NGF in degenerative retinal disease.
  • To identify the specific form of NGF involved and its mechanism of action.

Main Methods:

  • Analysis of neurotrophin expression in activated retinal microglia.
  • Culturing retinal microglia and analyzing conditioned media (MGCM).
  • Testing the effects of MGCM and purified proteins on a mouse photoreceptor cell line (661w).
  • Investigating pro-NGF levels in the RCS rat model of retinal dystrophy.
  • Examining the role of p75 neurotrophin receptor (p75NTR) in mediating cell death.

Main Results:

  • Activated retinal microglia express high molecular weight neurotrophins, including NGF.
  • MGCM contains a ~32 kDa NGF-reactive protein (pro-NGF) that promotes photoreceptor cell death.
  • Pro-NGF levels are elevated in the RCS rat model of retinal dystrophy.
  • MGCM-induced cell death is mediated by p75NTR.

Conclusions:

  • A ~32 kDa pro-NGF protein released by activated retinal microglia contributes to photoreceptor cell degeneration.
  • Defective post-translational processing of NGF may play a role in photoreceptor cell loss in retinal dystrophy.

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