Identification of novel coding mutation in C1qA gene in an African-American pedigree with lupus and C1q deficiency
LUPUS
Authors: Namjou, B.; Keddache, M.; Fletcher, D.; Dillon, S.; Kottyan, L.; Wiley, G.; Gaffney, P. M.; Wakeland, B. E.; Liang, C.; Wakeland, E. K.; Scofield, R. H.; Kaufman, K.; Harley, J. B.
Abstract
Objectives: Homozygous C1q deficiency is an extremely rare condition and strongly associated with systemic lupus erythematosus. To assess and characterize C1q deficiency in an African-American lupus pedigree, C1q genomic region was evaluated in the lupus cases and family members. Methods: Genomic DNA from patient was obtained and C1q A, B and C gene cluster was sequenced using next generation sequencing method. The identified mutation was further confirmed by direct Sanger sequencing method in the patient and all blood relatives. C1q levels in serum were measured using sandwich ELISA method. Results: In an African-American patient with lupus and C1q deficiency, we identified and confirmed a novel homozygote start codon mutation in C1qA gene that changes amino acid methionine to arginine at position 1. The Met1Arg mutation prevents protein translation (Met1Arg). Mutation analyses of the patient's family members also revealed the Met1Arg homozygote mutation in her deceased brother who also had lupus with absence of total complement activity consistent with a recessive pattern of inheritance. Conclusion: The identification of new mutation in C1qA gene that disrupts the start codon (ATG to AGG (Met1Arg)) has not been reported previously and it expands the knowledge and importance of the C1q gene in the pathogenesis of lupus especially in the high-risk African-American population. Lupus (2012) 21, 1113-1118.
Complement C1Q polymorphisms modulate onset in familial amyloidotic polyneuropathy TTR Val30Met
JOURNAL OF THE NEUROLOGICAL SCIENCES
Authors: Dardiotis, Efthimios; Koutsou, Pantelitsa; Zamba-Papanicolaou, Eleni; Vonta, Ilia; Hadjivassiliou, Marilena; Hadjigeorgiou, Georgios; Cariolou, Marios; Christodoulou, Kyproula; Kyriakides, Theodoros
Abstract
Background: Familial amyloidotic polyneuropathy (FAP) TTR Val30Met is a lethal autosomal dominant sensorimotor and autonomic neuropathy due to a substitution of methionine for valine at position 30 of the transthyretin (TTR) gene. Amyloid, composed of mutated TTR, is deposited in the peripheral nervous system, myocardium and kidneys. Considerable variability in the age of onset and penetrance of the disease occurs in different countries. Penetrance in Sweden, Cyprus and Portugal is 2%, 28% and 80% respectively. Environmental and genetic factors are believed to contribute to this variability. So far, no single modifier gene has been unequivocally associated with age of onset or penetrance. Methods: Candidate modifier genes were chosen from among those coding for chaperone proteins co-localized with TTR deposits in peripheral nerves. Seventy one TTRVal30Met carriers, 51 affected and 20 asymptomatic, belonging to 22 unrelated Greek-Cypriot families, and 59 normal controls were recruited for this study. Sequencing of the coding regions of TTR, serum amyloid P (APCS) and complement C1Q (A, B and C) genes was performed and APOE genotypes were determined. We searched for correlations between various polymorphisms of chaperone proteins and age of disease onset. Results: Four new and 4 previously described single nucleotide substitutions were identified. One polymorphic site in C1QA (rs172378) and one in C1QC (rs9434) as well as the epsilon 2 allele correlated with age of onset (p<0.05). Conclusions: Our study has identified polymorphisms which may influence the FAP-TTR Val30Met phenotype. Identifying modifier genes and their protein products may contribute to therapeutic advances. (C) 2009 Elsevier B. V. All rights reserved.