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Molecular basis of complete C4 deficiency. A study of three patients
B Uring-Lambert1, F Mascart-Lemone, M M Tongio
1Laboratoire de Recherches en Immunologie, CHU Strasbourg, France.
Insights
Complete C4 deficiency, linked to systemic lupus erythematosus, is not caused by C4 gene deletions. Molecular basis for this rare condition remains complex and may vary between patients.
Area of Science:
- Immunogenetics
- Molecular Biology
- Human Genetics
Background:
- The fourth component of human complement (C4) is highly polymorphic, encoded by C4A and C4B genes.
- Null alleles (C4A*Q0, C4B*Q0) are frequent, but complete C4 deficiency is rare, occurring in homozygotes for the C4AQ0,BQ0 haplotype.
- Complete C4 deficiency is associated with systemic lupus erythematosus and increased infection susceptibility.
Purpose of the Study:
- To investigate the molecular basis of complete C4 deficiency.
- To analyze the C4 and 21-hydroxylase (21-OH) genes in C4-deficient patients.
Main Methods:
- Restriction fragment length polymorphism (RFLP) analysis of C4 and 21-OH genes.
- DNA analysis in three unrelated C4-deficient patients.
Main Results:
- Two of the three patients showed deletions of C4B and 21-OHA genes.
- One patient had no detectable gene deletions.
- Complete C4 deficiency is not solely due to C4 gene deletions.
Conclusions:
- The molecular basis of complete C4 deficiency is complex and not solely explained by gene deletions.
- The genetic abnormality may differ among individuals with C4 deficiency.
Abstract:
The highly polymorphic fourth component of human complement (C4) is usually encoded by two genes, C4A and C4B, adjacent to the 21-hydroxylase (21-OH) genes and is also remarkable by the high frequency of the null alleles, C4A*Q0 and C4B*Q0. Complete C4 deficiency is exceptional because this condition appears only in homozygotes for the very rare double-null haplotype C4AQ0,BQ0. This condition in most cases gives rise to systemic lupus erythematosus and an increased susceptibility to infections. The molecular basis for complete C4 deficiency has not yet been established. Therefore we studied the DNA of three previously described C4 deficient patients belonging to unrelated families by restriction fragment length polymorphism analysis using C4 and 21-OH probes. These studies revealed a deletion of the C4B and 21-OHA genes in two patients and no deletion at all in the third patient. Therefore, complete C4 deficiency as a result of homozygosity for the C4AQ0, BQ0 haplotype is not a consequence of a deletion of the C4 genes. The molecular basis of this genetic abnormality is certainly very complex and may vary also from one case to another.
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