Mutation-dependent recessive inheritance of NPHS2-associated steroid-resistant nephrotic syndrome
doi: 10.1038/ng.2898
pmid: 24509478
Mutation-dependent recessive inheritance of NPHS2-associated steroid-resistant nephrotic syndrome
Monogenic disorders result from defects in a single gene. According to Mendel's laws, these disorders are inherited in either a recessive or dominant fashion. Autosomal-recessive disorders require a disease-causing variant on both alleles, and according to our current understanding, their pathogenicities are not influenced by each other. Here we present an autosomal-recessive disorder, nephrotic syndrome type 2 (MIM 600995), in which the pathogenicity of an NPHS2 allele encoding p.Arg229Gln depends on the trans-associated mutation. We show that, contrary to expectations, this allele leads to a disease phenotype only when it is associated specifically with certain 3' NPHS2 mutations because of an altered heterodimerization and mislocalization of the encoded p.Arg229Gln podocin. The disease-associated 3' mutations exert a dominant-negative effect on p.Arg229Gln podocin but behave as recessive alleles when associated with wild-type podocin. Therefore, the transmission rates for couples carrying the disease-associated mutations and p.Arg229Gln may be substantially different from those expected in autosomal-recessive disorders.
Adult, Male, Models, Molecular, Nephrotic Syndrome, QD Chemistry / kémia, 610, 576, Cohort Studies, Gene Frequency, Humans, Child, Protein Structure, Quaternary, Podocytes, Cell Membrane, Intracellular Signaling Peptides and Proteins, Membrane Proteins, Exons, Amino Acid Substitution, Mutation, Female, QP Physiology / élettan, Protein Multimerization
Adult, Male, Models, Molecular, Nephrotic Syndrome, QD Chemistry / kémia, 610, 576, Cohort Studies, Gene Frequency, Humans, Child, Protein Structure, Quaternary, Podocytes, Cell Membrane, Intracellular Signaling Peptides and Proteins, Membrane Proteins, Exons, Amino Acid Substitution, Mutation, Female, QP Physiology / élettan, Protein Multimerization
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