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Sci Rep ; 6: 39082, 2016 12 14.
Article in English | MEDLINE | ID: mdl-27966633

ABSTRACT

Congenital adrenal hyperplasia due to 21-hydroxylase deficiency accounts for 90-95% of CAH cases. In this work we performed an extensive survey of mutations and SNPs modifying the coding sequence of the CYP21A2 gene. Using bioinformatic tools and two plausible CYP21A2 structures as templates, we initially classified all known mutants (n = 343) according to their putative functional impacts, which were either reported in the literature or inferred from structural models. We then performed a detailed analysis on the subset of mutations believed to exclusively impact protein stability. For those mutants, the predicted stability was calculated and correlated with the variant's expected activity. A high concordance was obtained when comparing our predictions with available in vitro residual activities and/or the patient's phenotype. The predicted stability and derived activity of all reported mutations and SNPs lacking functional assays (n = 108) were assessed. As expected, most of the SNPs (52/76) showed no biological implications. Moreover, this approach was applied to evaluate the putative synergy that could emerge when two mutations occurred in cis. In addition, we propose a putative pathogenic effect of five novel mutations, p.L107Q, p.L122R, p.R132H, p.P335L and p.H466fs, found in 21-hydroxylase deficient patients of our cohort.


Subject(s)
Adrenal Hyperplasia, Congenital/genetics , Genetic Variation , Steroid 21-Hydroxylase/chemistry , Steroid 21-Hydroxylase/genetics , Computer Simulation , Humans , Models, Molecular , Mutation , Polymorphism, Single Nucleotide , Protein Conformation , Protein Stability , Steroid 21-Hydroxylase/metabolism , Structure-Activity Relationship
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