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Published on: July 14, 2016
CFH Haploinsufficiency and Complement Alterations in Early-Onset Macular Degeneration
Rayne R Lim1, Sharlene Shirali1, Jessica Rowlan1
1Department of Ophthalmology, University of Washington, Seattle, Washington, United States.
Insights
A novel complement factor H (CFH) variant causes reduced CFH and factor H-like protein 1 (FHL-1) in early-onset macular drusen (EOMD). This leads to increased complement activity in retinal cells, supporting CFH haploinsufficiency in EOMD.
Area of Science:
- Ophthalmology
- Immunology
- Genetics
Background:
- Complement dysregulation is implicated in age-related macular degeneration (AMD) and early-onset macular drusen (EOMD).
- Genetic variants in complement factor H (CFH) are linked to AMD risk.
- The impact of CFH and factor H-like protein 1 (FHL-1) expression on local complement activity in retinal pigment epithelium (RPE) is not fully understood.
Purpose of the Study:
- To investigate the role of a novel CFH variant in EOMD pathogenesis.
- To assess the effect of this variant on CFH and FHL-1 expression and local complement activity in patient-derived RPE cells.
Main Methods:
- Generated induced pluripotent stem cell (iPSC)-derived RPE cells from a family with a novel CFH variant.
- Assessed CFH and FHL-1 co-factor activity via C3b breakdown assays.
- Measured membrane attack complex (MAC) formation and quantified expression of complement components and regulators using qPCR, western blot, and immunostaining.
- Utilized CRISPR/Cas9 gene editing to create isogenic control RPE cells (cEOMD).
Main Results:
- The identified CFH variant (c.351-2A>G) led to a significant reduction (∼50%) in CFH and FHL-1 expression in EOMD iPSC RPE cells.
- EOMD RPE cells showed increased MAC deposition and elevated expression of complement regulators under stress.
- CRISPR/Cas9 correction restored CFH/FHL-1 expression and normalized alternative pathway complement activity.
Conclusions:
- A novel CFH variant causes reduced CFH and FHL-1 expression in EOMD.
- This reduction results in increased local complement activity in RPE cells.
- Findings support CFH haploinsufficiency as a contributing factor to EOMD pathogenesis.
Purpose:
Complement dysregulation is a key component in the pathogenesis of age-related macular degeneration (AMD) and related diseases such as early-onset macular drusen (EOMD). Although genetic variants of complement factor H (CFH) are associated with AMD risk, the impact of CFH and factor H-like protein 1 (FHL-1) expression on local complement activity in human retinal pigment epithelium (RPE) remains unclear.
Methods:
We identified a novel CFH variant in a family with EOMD and generated patient induced pluripotent stem cell (iPSC)-derived RPE cells. We assessed CFH and FHL-1 co-factor activity through C3b breakdown assays and measured complement activation by immunostaining for membrane attack complex (MAC) formation. Expression of CFH, FHL-1, local alternative pathway (AP) components, and regulators of complement activation (RCA) in EOMD RPE cells was determined by quantitative PCR, western blot, and immunostaining. Isogenic EOMD (cEOMD) RPE was generated using CRISPR/Cas9 gene editing.
Results:
The CFH variant (c.351-2A>G) resulted in loss of CFH and FHL-1 expression and significantly reduced CFH and FHL-1 protein expression (∼50%) in EOMD iPSC RPE cells. These cells exhibited increased MAC deposition upon exposure to normal human serum. Under inflammatory or oxidative stress conditions, CFH and FHL-1 expression in EOMD RPE cells paralleled that of controls, whereas RCA expression, including MAC formation inhibitors, was elevated. CRISPR/Cas9 correction restored CFH/FHL-1 expression and mitigated alternative pathway complement activity in cEOMD RPE cells.
Conclusions:
Identification of a novel CFH variant in patients with EOMD resulting in reduced CFH and FHL-1 and increased local complement activity in EOMD iPSC RPE supports the involvement of CFH haploinsufficiency in EOMD pathogenesis.
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