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A novel albumin gene mutation (R222I) in familial dysalbuminemic hyperthyroxinemia. | LitMetric

A novel albumin gene mutation (R222I) in familial dysalbuminemic hyperthyroxinemia.

J Clin Endocrinol Metab

University of Cambridge Metabolic Research Laboratories (N.S., C.M., M.A., O.R., G.L., M.G., K.C.), Wellcome Trust-Medical Research Council Institute of Metabolic Science, Addenbrooke's Hospital, Cambridge CB2 0QQ, United Kingdom; Institute of Endocrine Sciences (I.C., P.B.-P.), University of Milan, 20132 Milan, Italy; Department of Biochemistry (J.S.), University of Leicester, Leicester LE1 7RH, United Kingdom; Departments of Paediatrics (T.B.) and Clinical Chemistry (M.B.), Birmingham Childrens Hospital, Birmingham B15 2TT, United Kingdom; Departments of Endocrinology (M.D.), St Bartholomew's Hospital, London E1 4NS, United Kingdom; Department of Clinical Biochemistry (F.G.), Ealing Hospital, London UB1 3EU, United Kingdom; Department of Clinical Biochemistry (A.O., P.C.), Selly Oak Hospital, Birmingham B29 6JD, United Kingdom; and Department of Clinical Biochemistry (O.B., S.B., D.H.), Addenbrooke's Hospital, Cambridge CB2 2OO, United Kingdom.

Published: July 2014

Context: Familial dysalbuminemic hyperthyroxinemia, characterized by abnormal circulating albumin with increased T4 affinity, causes artefactual elevation of free T4 concentrations in euthyroid individuals.

Objective: Four unrelated index cases with discordant thyroid function tests in different assay platforms were investigated.

Design And Results: Laboratory biochemical assessment, radiolabeled T4 binding studies, and ALB sequencing were undertaken. (125)I-T4 binding to both serum and albumin in affected individuals was markedly increased, comparable with known familial dysalbuminemic hyperthyroxinemia cases. Sequencing showed heterozygosity for a novel ALB mutation (arginine to isoleucine at codon 222, R222I) in all four cases and segregation of the genetic defect with abnormal biochemical phenotype in one family. Molecular modeling indicates that arginine 222 is located within a high-affinity T4 binding site in albumin, with substitution by isoleucine, which has a smaller side chain predicted to reduce steric hindrance, thereby facilitating T4 and rT3 binding. When tested in current immunoassays, serum free T4 values from R222I heterozygotes were more measurably abnormal in one-step vs two-step assay architectures. Total rT3 measurements were also abnormally elevated.

Conclusions: A novel mutation (R222I) in the ALB gene mediates dominantly inherited dysalbuminemic hyperthyroxinemia. Susceptibility of current free T4 immunoassays to interference by this mutant albumin suggests likely future identification of individuals with this variant binding protein.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4191552PMC
http://dx.doi.org/10.1210/jc.2013-4077DOI Listing

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