Injury to retinal ganglion cells induces expression of the small heat shock protein Hsp27 in the rat visual system

Neuroscience. 2002;110(4):653-65. doi: 10.1016/s0306-4522(01)00453-5.

Abstract

Optic nerve transection results in apoptotic cell death of most adult rat retinal ganglion cells that begins at 4 days and leaves few surviving neurons at 14 days post-injury [Berkelaar et al. (1994) J. Neurosci. 14, 4368-4374]. The small heat shock protein Hsp27 has recently been shown to play a role in sensory neuron survival following peripheral nerve axotomy [Lewis et al. (1999) J. Neurosci. 19, 8945-8953]. To investigate the role of Hsp27 in injured CNS sensory neurons, we have studied the induction and cell-specific expression of Hsp27 in rat retinal ganglion cells 1-28 days after optic nerve transection. Immunohistochemical results indicate that Hsp27 is not present at detectable levels in the ganglion cell layer of control (uninjured) or sham-operated control rats. In contrast, Hsp27 is detected in retinal ganglion cells from 4 to 28 days following axotomy. Furthermore, the percentage of surviving retinal ganglion cells that are Hsp27-positive increased over the same time period. Hsp27 is also detected in glial fibrillary acidic protein-positive astrocytes in the optic layer of the superior colliculus from 4 to 28 days after optic nerve transection. These experiments demonstrate that transection of the optic nerve results in the expression of Hsp27 in three distinct regions of the rat visual system: sensory retinal ganglion cells in the eye, glial cells of the optic tract, and astrocytes in the optic layer of the superior colliculus. Hsp27 may be associated with enhanced survival of a subset of retinal ganglion cells, providing evidence of a protective role for Hsp27 in CNS neuronal injury.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Apoptosis / physiology*
  • Axotomy
  • Cell Survival / physiology*
  • Female
  • Fluorescent Dyes
  • Gene Expression / physiology
  • Glial Fibrillary Acidic Protein / metabolism
  • HSP27 Heat-Shock Proteins
  • Heat-Shock Proteins*
  • Immunohistochemistry
  • Neoplasm Proteins / metabolism*
  • Nerve Degeneration / metabolism*
  • Nerve Degeneration / pathology
  • Nerve Degeneration / physiopathology
  • Optic Nerve Injuries / metabolism*
  • Optic Nerve Injuries / pathology
  • Optic Nerve Injuries / physiopathology
  • Rats
  • Rats, Sprague-Dawley
  • Retinal Ganglion Cells / cytology
  • Retinal Ganglion Cells / metabolism*
  • Stilbamidines*
  • Superior Colliculi / cytology
  • Superior Colliculi / metabolism
  • Up-Regulation / physiology*
  • Visual Pathways / cytology
  • Visual Pathways / metabolism

Substances

  • 2-hydroxy-4,4'-diamidinostilbene, methanesulfonate salt
  • Fluorescent Dyes
  • Glial Fibrillary Acidic Protein
  • HSP27 Heat-Shock Proteins
  • Heat-Shock Proteins
  • Hspb1 protein, rat
  • Neoplasm Proteins
  • Stilbamidines