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Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
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Gain-of-function factor H-related 5 protein impairs glomerular complement regulation resulting in kidney damage
Talat H Malik1, Daniel P Gitterman2, Deborah P Lavin1
1Centre for Inflammatory Disease, Imperial College London, London W12 0NN, United Kingdom.
Summary
Mutant factor H-related protein 5 (FHR5mut) causes C3 glomerulopathy (C3G) by disrupting kidney complement regulation. FH-derived molecules with enhanced C3 binding show therapeutic potential for C3G.
Area of Science:
- Nephrology
- Immunology
- Genetics
Background:
- Genetic variations in factor H-related (FHR) genes are linked to C3 glomerulopathy (C3G), a complement-mediated kidney disease.
- Currently, no definitive treatments exist for C3G, leading to end-stage renal disease in many patients.
- CFHR5 nephropathy, characterized by mutant FHR5 protein accumulation and glomerular C3 deposition, exemplifies C3G pathogenesis.
Purpose of the Study:
- To model CFHR5 nephropathy in mice to understand how abnormal FHR proteins cause C3G.
- To investigate the pathogenic mechanism of mutant FHR5 protein in C3G.
- To evaluate the therapeutic potential of FH-derived molecules in a mouse model of C3G.
Main Methods:
- Developed a mouse model of CFHR5 nephropathy by coexpressing human factor H (FH) and a mutant FHR5 protein (FHR5mut).
- Assessed glomerular C3 deposition in mice expressing human FH with FHR5mut versus normal FHR5.
- Administered adeno-associated virus vector-delivered homodimeric mini-FH to mice with FHR5mut-induced C3 deposition.
Main Results:
- Mice coexpressing human FH and FHR5mut developed glomerular C3 deposition, unlike those with normal FHR5.
- The FHR5mut exhibited a dominant gain-of-function effect, triggering C3 deposition when administered.
- Homodimeric mini-FH reduced glomerular C3 deposition in the presence of FHR5mut, demonstrating therapeutic efficacy.
Conclusions:
- Mutant FHR5 protein directly causes C3G by disrupting kidney complement homeostasis.
- FH-derived molecules with enhanced C3 binding are promising therapeutic agents for C3G associated with abnormal FHR proteins.
- Targeting FHR5 offers a potential strategy for treating complement-mediated kidney injury.
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