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Published on: May 26, 2023
Functional analyses of rare genetic variants in complement component C9 identified in patients with age-related
Mariann Kremlitzka1, Maartje J Geerlings2, Sarah de Jong1,2
1Division of Medical Protein Chemistry, Department of Translational Medicine, Lund University, Malmö Sweden.
Insights
New genetic variants in the complement component C9 (C9) gene are linked to age-related macular degeneration (AMD). Some C9 variants alter protein secretion and polymerization, potentially impacting AMD development.
Area of Science:
- Ophthalmology
- Immunology
- Genetics
Background:
- Age-related macular degeneration (AMD) is a leading cause of irreversible vision loss.
- Abnormal complement activation is implicated in AMD pathogenesis.
- Genetic variants in complement genes are associated with AMD risk.
Purpose of the Study:
- To investigate the functional effects of novel and known rare genetic variants in the complement component C9 (C9) gene in AMD patients.
- To explore the impact of these C9 variants on C9 secretion, polymerization, and lytic activity.
Main Methods:
- Identification of rare C9 variants in AMD patients.
- In vitro functional assays to evaluate C9 secretion and polymerization.
- Assessment of C9 lytic activity using sheep erythrocytes and retinal pigment epithelial cells.
Main Results:
- Five novel rare C9 variants (p.M45L, p.F62S, p.G126R, p.T170I, p.A529T) were identified in AMD patients.
- Elevated C9 serum concentrations were observed for variants p.M45L, p.F62S, p.P167S, and p.A529T.
- Altered C9 polymerization was observed for p.P167S (spontaneous aggregation) and other variants, with decreased lytic activity for p.F62S and p.P167S.
Conclusions:
- Analyzed C9 variants affect C9 secretion and polymerization, but not classical lytic activity.
- Altered C9 polymerization may play a role in AMD pathology.
- Further research is needed to elucidate the implications of C9 polymerization changes in AMD.
Abstract:
Age-related macular degeneration (AMD) is a progressive disease of the central retina and the leading cause of irreversible vision loss in the western world. The involvement of abnormal complement activation in AMD has been suggested by association of variants in genes encoding complement proteins with disease development. A low-frequency variant (p.P167S) in the complement component C9 (C9) gene was recently shown to be highly associated with AMD; however, its functional outcome remains largely unexplored. In this study, we reveal five novel rare genetic variants (p.M45L, p.F62S, p.G126R, p.T170I and p.A529T) in C9 in AMD patients, and evaluate their functional effects in vitro together with the previously identified (p.R118W and p.P167S) C9 variants. Our results demonstrate that the concentration of C9 is significantly elevated in patients' sera carrying the p.M45L, p.F62S, p.P167S and p.A529T variants compared with non-carrier controls. However, no difference can be observed in soluble terminal complement complex levels between the carrier and non-carrier groups. Comparing the polymerization of the C9 variants we reveal that the p.P167S mutant spontaneously aggregates, while the other mutant proteins (except for C9 p.A529T) fail to polymerize in the presence of zinc. Altered polymerization of the p.F62S and p.P167S proteins associated with decreased lysis of sheep erythrocytes and adult retinal pigment epithelial-19 cells by carriers' sera. Our data suggest that the analyzed C9 variants affect only the secretion and polymerization of C9, without influencing its classical lytic activity. Future studies need to be performed to understand the implications of the altered polymerization of C9 in AMD pathology.
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