The Specific Pathogenicity Pattern of the Different CRB1 Isoforms Conditions Clinical Severity in Inherited Retinal

Laura Siles1, Sheila Ruiz-Nogales1, Pilar Méndez-Vendrell1

  • 1Departament de Genètica, Institut de Microcirurgia Ocular, IMO Grupo Miranza, 08035 Barcelona, Spain.

Insights

Pathogenic variants in Crumbs homolog 1 (CRB1) cause severe vision loss. This study reveals CRB1 isoform expression patterns in retinal cells, linking specific CRB1 variants to disease severity in inherited retinal dystrophies.

Area of Science:

  • Ophthalmology
  • Genetics
  • Cell Biology

Background:

  • Pathogenic Crumbs homolog 1 (CRB1) variants cause severe inherited retinal dystrophies, including Leber congenital amaurosis and macular dystrophies.
  • The expression and function of CRB1 in retinal cells are not fully understood, despite its clinical significance.

Purpose of the Study:

  • To comprehensively characterize CRB1 isoform expression in human retinal models.
  • To investigate the role of CRB1 isoforms in retinal cell development and differentiation.
  • To establish genotype-phenotype correlations in CRB1-associated inherited retinal dystrophies.

Main Methods:

  • Analysis of CRB1 isoform expression in human retinal organoids and retinal pigment epithelium (RPE) models.
  • Clinical and genetic evaluation of 25 patients with pathogenic CRB1 variants.
  • Identification and characterization of novel CRB1 variants.

Main Results:

  • CRB1 is expressed in photoreceptors, Müller glial cells, and RPE, with distinct isoform patterns during retinal cell maturation.
  • The CRB1-C isoform is highly expressed in early photoreceptor development and RPE.
  • A genotype-phenotype correlation was proposed, and four novel pathogenic CRB1 variants were identified.

Conclusions:

  • CRB1 isoforms exhibit dynamic expression during retinal differentiation, suggesting developmental roles.
  • Understanding CRB1 isoform expression is crucial for elucidating CRB1-associated inherited retinal dystrophies.
  • This study provides new insights into CRB1 function and its contribution to vision loss.