Glucocorticoids Preferentially Influence Expression of Nucleoskeletal Actin Network and Cell Adhesive Proteins in

William Bachman1, Rupalatha Maddala1, Ayon Chakraborty1

  • 1Department of Ophthalmology, Duke University School of Medicine, Durham, NC, United States.

Insights

Glucocorticoids alter trabecular meshwork cell proteins, impacting intraocular pressure and glaucoma risk. Key changes involve actin regulators, Wnt signaling, and chromatin remodeling, revealing new therapeutic targets.

Area of Science:

  • Ocular biology
  • Molecular cell biology
  • Glaucoma research

Background:

  • Glucocorticoid use increases intraocular pressure (IOP), a primary glaucoma risk factor.
  • Glucocorticoids affect trabecular meshwork (TM) cell properties, but molecular mechanisms are unclear.
  • Understanding nuclear protein changes in TM cells is crucial for IOP homeostasis.

Purpose of the Study:

  • To identify nuclear protein alterations in human TM cells treated with dexamethasone (Dex).
  • To elucidate the molecular pathways involved in glucocorticoid-induced changes in TM cells.
  • To investigate the role of BRG1 in mediating these Dex-induced effects.

Main Methods:

  • Proteomic analysis of nuclear protein fractions from human TM cells after 1, 5, and 7 days of Dex treatment.
  • Immunoblotting validation of key protein level changes.
  • Assessment of BRG1 deficiency effects on Dex-induced protein alterations.

Main Results:

  • Dexamethasone treatment significantly increased levels of actin cytoskeletal regulators, cell adhesion proteins, and vesicle trafficking proteins.
  • Elevated levels of glypican-4 (Wnt regulator), BRG1 (chromatin modulator), and MICAL2 (actin depolymerizer) were observed.
  • BRG1 deficiency partially reversed Dex-induced increases in specific TM cell proteins.

Conclusions:

  • Glucocorticoid-induced changes in TM cell actin cytoskeleton and adhesion involve BRG1-mediated chromatin remodeling.
  • Nuclear MICAL2 and glypican-4-regulated Wnt signaling are implicated in these cellular changes.
  • These findings highlight novel molecular targets for managing glucocorticoid-induced IOP elevation.

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