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Genetic Modifiers of Mendelian Monogenic Collagen IV Nephropathies in Humans and Mice
Constantinos Deltas1,2, Gregory Papagregoriou2, Stavroula F Louka2
1School of Medicine, University of Cyprus, Nicosia 2109, Cyprus.
Insights
Familial hematuria, often linked to COL4A3/A4/A5 gene variants, can lead to kidney failure. Identifying genetic modifiers may help predict aggressive disease progression in Alport syndrome patients.
Area of Science:
- Nephrology
- Genetics
- Molecular Biology
Background:
- Familial hematuria presents as a group of genetically diverse conditions with variable expressivity.
- Pathogenic variants in collagen-IV genes (COL4A3/A4/A5) are the most common cause, leading to Alport syndrome (AS) or thin basement membrane nephropathy.
- AS can cause progressive kidney failure, particularly X-linked and autosomal recessive forms.
Purpose of the Study:
- To review existing literature on candidate genetic modifiers influencing the clinical course of Alport syndrome.
- To summarize findings from studies investigating genetic modifiers in both human patients and AS mouse models.
- To address the unmet need for distinguishing patients with aggressive kidney function decline.
Main Methods:
- Comprehensive review of publications detailing genetic modifiers in familial hematuria and Alport syndrome.
- Inclusion of studies examining Alport syndrome mouse models to understand disease mechanisms.
- Analysis of clinical data to identify correlations between genetic factors and disease severity.
Main Results:
- Heterozygous COL4A3/A4 variants can cause a slowly progressive Alport spectrum nephropathy, sometimes diagnosed as benign familial hematuria or autosomal dominant AS.
- While many patients maintain normal kidney function, a significant portion develops chronic kidney disease (CKD) or kidney failure.
- Research suggests that coinherited genetic modifiers may exacerbate the clinical course in a subgroup of patients.
Conclusions:
- Understanding the role of genetic modifiers is crucial for predicting disease progression in Alport syndrome.
- Further research into genetic modifiers could lead to targeted interventions for patients at risk of aggressive kidney disease.
- Identifying these modifiers may improve diagnostic accuracy and therapeutic strategies for familial hematuria.
Abstract:
Familial hematuria is a clinical sign of a genetically heterogeneous group of conditions, accompanied by broad inter- and intrafamilial variable expressivity. The most frequent condition is caused by pathogenic (or likely pathogenic) variants in the collagen-IV genes, COL4A3/A4/A5. Pathogenic variants in COL4A5 are responsible for the severe X-linked glomerulopathy, Alport syndrome (AS), while homozygous or compound heterozygous variants in the COL4A3 or the COL4A4 gene cause autosomal recessive AS. AS usually leads to progressive kidney failure before the age of 40-years when left untreated. People who inherit heterozygous COL4A3/A4 variants are at-risk of a slowly progressive form of the disease, starting with microscopic hematuria in early childhood, developing Alport spectrum nephropathy. Sometimes, they are diagnosed with benign familial hematuria, and sometimes with autosomal dominant AS. At diagnosis, they often show thin basement membrane nephropathy, reflecting the uniform thin glomerular basement membrane lesion, inherited as an autosomal dominant condition. On a long follow-up, most patients will retain normal or mildly affected kidney function, while a substantial proportion will develop chronic kidney disease (CKD), even kidney failure at an average age of 55-years. A question that remains unanswered is how to distinguish those patients with AS or with heterozygous COL4A3/A4 variants who will manifest a more aggressive kidney function decline, requiring prompt medical intervention. The hypothesis that a subgroup of patients coinherit additional genetic modifiers that exacerbate their clinical course has been investigated by several researchers. Here, we review all publications that describe the potential role of candidate genetic modifiers in patients and include a summary of studies in AS mouse models.
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