Fluorescence investigations of albumin from patients with familial dysalbuminemic hyperthyroxinemia.
نویسندگان
چکیده
Familial dysalbuminemic hyperthyroxinemia (FDH) is an autosomal dominant syndrome in which clinically euthyroid patients have elevated total thyroxine levels. These high serum thyroxine levels are traceable to altered binding of thyroxine to the patient's albumin. Albumin from FDH patients and normal volunteers have been purified. Reverse-phase and ion-exchange high performance liquid chromatography and sodium dodecyl sulfate-polyacrylamide gel electrophoresis on the FDH-human serum albumin (HSA) samples show a single band that comigrates with normal HSA. In both protein solutions the intrinsic fluorescence, upon 280 nm excitation, is predominantly due to the single tryptophan residue. The quantum yield of this intrinsic fluorescence in the FDH-HSA solutions is, however, reduced relative to that of HSA. Furthermore, the "average" lifetime value of the tryptophan emission in the FDH-HSA sample is less than that of normal HSA, consistent with its reduced quantum yield. The binding of thyroxine to both albumins effectively quenches the tryptophan emission probably via a nonradiative energy transfer mechanism. Time-resolved data suggest that the albumin from the dysalbuminemic patients is actually an approximately equimolar mixture of normal HSA and FDH-HSA indicative of heterologous expression. Quenching of the intrinsic HSA and FDH-HSA fluorescence by serial additions of thyroxine showed enhanced quenching of FDH-HSA relative to HSA at any T4 to albumin mole ratio, therefore supporting earlier reports of increased thyroxine affinity to FDH-HSA.
منابع مشابه
Structural investigations of a new familial dysalbuminemic hyperthyroxinemia genotype.
BACKGROUND In a previous study, we found that the amino acid substitution R218H in human serum albumin (HSA) was the cause of familial dysalbuminemic hyperthyroxinemia (FDH) in several Caucasian patients. Subsequently the substitution R218P was shown to be the cause of FDH in several members of a Japanese family. This study attempts to resolve discrepancies in the only other study of R218P HSA ...
متن کاملFamilial Dysalbuminemic Hyperthyroxinemia in a Japanese Man Caused by a Point Albumin Gene Mutation (R218P).
Familial dysalbuminemic hyperthyroxinemia (FDH) is a familial autosomal dominant disease caused by mutation in the albumin gene that produces a condition of euthyroid hyperthyroxinemia. In patients with FDH, serum-free thyroxine (FT4) and free triiodothyronine (FT3) concentrations as measured by several commercial methods are often falsely increased with normal thyrotropin (TSH). Therefore, sev...
متن کاملA Novel Albumin Gene Mutation (R222I) in Familial Dysalbuminemic Hyperthyroxinemia
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, radiolabe...
متن کامل"Unbound analog" radioimmunoassays for free thyroxin measure the albumin-bound hormone fraction.
We have assessed the influence of albumin-bound thyroxin (T4) on apparent free T4 values obtained by two "unbound analog" free T4 methods (AmerlexR Free T4 and Clinical Assays one-step Free T4). We evaluated sera showing three different albumin anomalies: total hereditary analbuminemia, partially corrected analbuminemia, and familial dysalbuminemic hyperthyroxinemia, where abnormal albumin-bind...
متن کاملMutations in a specific human serum albumin thyroxine binding site define the structural basis of familial dysalbuminemic hyperthyroxinemia.
The familial dysalbuminemic hyperthyroxinemia (FDH) phenotype results from a natural human serum albumin (HSA) mutant with histidine instead of arginine at amino acid position 218. This mutation results in an enhanced affinity for thyroxine. Site-directed mutagenesis and a yeast protein expression system were used to synthesize wild type HSA and FDH HSA as well as several other HSA mutants. Stu...
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ورودعنوان ژورنال:
- Photochemistry and photobiology
دوره 57 3 شماره
صفحات -
تاریخ انتشار 1993