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Candidate Gene Testing in Clinical Cohort Studies with Multiplexed Genotyping and Mass Spectrometry
Published on: June 21, 2018
Clinical and Genetic Spectrum of a Large Cohort With Total and Sub-total Complement Deficiencies
Carine El Sissy1, Jérémie Rosain1, Paula Vieira-Martins1
1Assistance Publique - Hôpitaux de Paris (AP-HP), Laboratoire d'Immunologie, Hôpital Européen Georges-Pompidou, Paris, France.
Insights
Complement deficiencies increase susceptibility to infections and autoimmune diseases. This study identified pathogenic variants in 14 complement genes, revealing common molecular mechanisms and associated clinical risks.
Area of Science:
- Immunology
- Genetics
- Molecular Biology
Background:
- The complement system is vital for innate immunity, pathogen defense, and clearing cellular debris.
- Clinical manifestations of complement deficiencies include recurrent infections and autoimmune diseases (AID).
- Standard diagnostics involve functional assays (CH50, AP50) and complement component levels, but molecular causes often remain elusive.
Purpose of the Study:
- To identify the spectrum of pathogenic variants underlying total or subtotal complement deficiency (CD).
- To investigate the molecular mechanisms and genetic basis of complement deficiencies in a large patient cohort.
- To correlate genetic findings with clinical outcomes and risks.
Main Methods:
- Direct sequencing analysis of the coding regions of 14 complement genes in 212 patients with complement deficiency.
- Identification and characterization of hemizygous, homozygous, and compound heterozygous pathogenic variants.
- Comparison of identified variants with those found in healthy controls.
Main Results:
- Identified 107 distinct pathogenic variants in 14 complement genes.
- Found 17 recurrent pathogenic variants in 6 specific genes (C2, CFH, C5, C6, C7, C8).
- Over half of the identified pathogenic variants were also present in healthy controls, suggesting complex inheritance or variable penetrance.
Conclusions:
- A limited number of molecular mechanisms underlie complement deficiencies.
- Terminal pathway deficiencies are strongly associated with meningococcal infections.
- Classical and alternative pathway deficiencies increase the risk of pneumococcal infections and autoimmune diseases.
Abstract:
The complement system is crucial for defense against pathogens and the removal of dying cells or immune complexes. Thus, clinical indications for possible complete complement deficiencies include, among others, recurrent mild or serious bacterial infections as well as autoimmune diseases (AID). The diagnostic approach includes functional activity measurements of the classical (CH50) and alternative pathway (AP50) and the determination of the C3 and C4 levels, followed by the quantitative analysis of individual components or regulators. When biochemical analysis reveals the causal abnormality of the complement deficiency (CD), molecular mechanisms remains frequently undetermined. Here, using direct sequencing analysis of the coding region we report the pathogenic variants spectrum that underlie the total or subtotal complement deficiency in 212 patients. We identified 107 different hemizygous, homozygous, or compound heterozygous pathogenic variants in 14 complement genes [C1Qβ (n = 1), C1r (n = 3), C1s (n = 2), C2 (n = 12), C3 (n = 5), C5 (n = 12), C6 (n = 9), C7 (n = 17), C8 β (n = 7), C9 (n = 3), CFH (n = 7), CFI (n = 18), CFP (n = 10), CFD (n = 2)]. Molecular analysis identified 17 recurrent pathogenic variants in 6 genes (C2, CFH, C5, C6, C7, and C8). More than half of the pathogenic variants identified in unrelated patients were also found in healthy controls from the same geographic area. Our study confirms the strong association of meningococcal infections with terminal pathway deficiency and highlights the risk of pneumococcal and auto-immune diseases in the classical and alternative pathways. Results from this large genetic investigation provide evidence of a restricted number of molecular mechanisms leading to complement deficiency and describe the clinical potential adverse events of anti-complement therapy.
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