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A Phenotyping Regimen for Genetically Modified Mice Used to Study Genes Implicated in Human Diseases of Aging
Published on: July 14, 2016
The R345W mutation in EFEMP1 is pathogenic and causes AMD-like deposits in mice
Li Fu1, Donita Garland, Zhenglin Yang
1F.M. Kirby Center for Molecular Ophthalmology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
Abstract:
Age-related macular degeneration (AMD) is the most common cause of vision loss in developed countries. A defining characteristic of this disorder is the accumulation of material between Bruch's membrane and the retinal pigment epithelium (RPE), first as microscopic basal deposits and later as clinically evident drusen. The pathogenesis of these deposits remains to be defined. Biochemical and genetic studies have suggested that inflammation and complement activation may play roles in AMD. Several lines of evidence also suggest that alterations to the extracellular matrix (ECM) of the RPE and choroid contribute to the development of AMD. The inherited macular degeneration Doyne honeycomb retinal dystrophy/Malattia Leventinese is thought to be caused by an R345W mutation in the EFEMP1 gene (also called fibulin-3). The pathogenicity of this mutation has been questioned because all individuals identified to date with the R345W mutation have shared a common haplotype. We investigated the pathogenicity of this mutation in families with early-onset macular degeneration and by generating Efemp1-R345W knockin mice. Genetic studies show that one of the identified families with the R345W mutation has a novel haplotype. The mutant Efemp1-R345W mice develop deposits of material between Bruch's membrane and the RPE, which resemble basal deposits in patients with AMD. These basal deposits contain Efemp1 and Timp3, an Efemp1 interacting protein. Evidence of complement activation was detected in the RPE and Bruch's membrane of the mutant mice. These results confirm that the R345W mutation in EFEMP1 is pathogenic. Further, they suggest that alterations in the ECM may stimulate complement activation, demonstrating a potential connection between these two etiologic factors in macular degeneration.
Insights
The EFEMP1 R345W mutation causes age-related macular degeneration (AMD) by creating deposits in the eye and activating complement. This links extracellular matrix alterations to AMD pathogenesis.
Area of Science:
- Ophthalmology
- Genetics
- Molecular Biology
Background:
- Age-related macular degeneration (AMD) is a leading cause of vision loss.
- AMD is characterized by deposits between Bruch's membrane and the retinal pigment epithelium (RPE).
- The roles of extracellular matrix (ECM) alterations and complement activation in AMD are under investigation.
Purpose of the Study:
- To investigate the pathogenicity of the EFEMP1 R345W mutation in early-onset macular degeneration.
- To explore the link between ECM alterations and complement activation in AMD.
Main Methods:
- Genetic analysis of families with early-onset macular degeneration.
- Generation and study of Efemp1-R345W knockin mice.
- Histological and biochemical analysis of ocular tissues.
Main Results:
- A family with a novel haplotype for the R345W mutation was identified.
- Efemp1-R345W mice developed basal deposits resembling those in AMD patients.
- These deposits contained Efemp1 and Timp3, with evidence of complement activation.
Conclusions:
- The EFEMP1 R345W mutation is confirmed as pathogenic for macular degeneration.
- ECM alterations may trigger complement activation, linking these factors in AMD.
- This study provides insights into AMD pathogenesis and potential therapeutic targets.
