Constitutive and Stress-induced Expression of CCL5 Machinery in Rodent Retina

D'Anne S Duncan1, William M McLaughlin1, Noah Vasilakes1

  • 1Department of Ophthalmology and Visual Sciences, Vanderbilt Eye Institute, Vanderbilt University Medical Center, USA.

Journal of Clinical & Cellular Immunology
|September 23, 2017
PubMed

Insights

The study found that CCL5 signaling and its receptors are present in the mouse retina and may play a role in glaucoma. These molecules are altered by aging and genetic predisposition to optic neuropathy.

Area of Science:

  • Neuroscience
  • Ophthalmology
  • Immunology

Background:

  • Inflammatory cytokines and chemokines are linked to neurodegeneration.
  • Glaucoma is a common optic neuropathy influenced by intraocular pressure (IOP).

Purpose of the Study:

  • To investigate the expression and role of the β-chemokine CCL5 and its receptors in the mouse retina.
  • To evaluate the relevance of CCL5 signaling in glaucoma pathogenesis.

Main Methods:

  • Quantitative PCR, fluorescent in situ hybridization, and immunohistochemistry were used.
  • Quantitative image analysis assessed CCL5 and receptor expression and localization.
  • Expression patterns were analyzed in young and aged DBA/2 mice (glaucoma model) and age-matched controls.

Main Results:

  • CCL5 mRNA and protein were constitutively expressed in the inner retina and synaptic layers, associating with Müller cells, RGCs, and synapses.
  • All three high-affinity receptors (CCR5, CCR3, CCR1) for CCL5 were constitutively expressed, with CCR5 > CCR3 > CCR1.
  • Stress-related CCL5 expression altered in aged DBA/2 mice; CCR3 and CCR5 expression/localization changes were observed in aged DBA/2, aged controls, and young DBA/2 mice.

Conclusions:

  • CCL5 and its receptors are constitutively expressed in the murine retina.
  • CCL5 signaling is differentially induced by stressors associated with glaucomatous optic neuropathy.
  • CCL5 signaling may modulate retinal synapses in both health and disease, particularly in the inner plexiform layer.

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