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在甲状腺素结合球蛋白(TBG)中,亮氨酸227被脯氨酸取代,在八个患有这种遗传缺陷的家族中,有三个家族出现了完全性TBG缺乏。

Replacement of Leu227 by Pro in thyroxine-binding globulin (TBG) is associated with complete TBG deficiency in three of eight families with this inherited defect.

作者信息

Mori Y, Takeda K, Charbonneau M, Refetoff S

机构信息

Department of Medicine, University of Chicago, Illinois 60637.

出版信息

J Clin Endocrinol Metab. 1990 Mar;70(3):804-9. doi: 10.1210/jcem-70-3-804.

Abstract

The T4-binding globulin (TBG) gene is a single copy located on the X-chromosome. Previous studies have failed to elucidate the molecular defect in individuals with complete TBG deficiency (TBG-CD). Indeed, no major deletions, insertions, or other rearrangements were observed in the TBG gene of six unrelated males with this defect. To clarify the molecular basis of TBG-CD, we have cloned and sequenced the TBG gene of an affected male (CD5) of French Canadian origin. The sequence of the exons encoding the mature protein, adjacent introns, and the promoter region revealed two nucleotide substitutions: CTA(Leu)----CCA(Pro) at codon 227 and TTG(Leu)----TTT(Phe) at codon 283. The Leu----Phe substitution, a relatively conservative replacement, is a TBG polymorphism present in 16% (3 of 19) of French Canadian males. It has no effect on the serum concentration or properties of the common type TBG (TBG-C). The new Leu----Pro substitution, which is predicted to alter the higher order of TBG structure, is probably responsible for the TBG-CD phenotype of the individual studied and two other families with TBG-CD. It possibly impairs TBG biosynthesis or secretion or perhaps alters TBG structure to such a degree that the molecule is not recognized by antibodies against native or denatured TBG and does not bind T4.

摘要

甲状腺素结合球蛋白(TBG)基因是位于X染色体上的单拷贝基因。以往的研究未能阐明完全性TBG缺乏症(TBG-CD)患者的分子缺陷。事实上,在6名患有此缺陷的无关男性的TBG基因中未观察到重大缺失、插入或其他重排。为了阐明TBG-CD的分子基础,我们克隆并测序了一名法裔加拿大裔患病男性(CD5)的TBG基因。编码成熟蛋白的外显子、相邻内含子和启动子区域的序列显示出两个核苷酸替换:密码子227处CTA(亮氨酸)替换为CCA(脯氨酸),密码子283处TTG(亮氨酸)替换为TTT(苯丙氨酸)。亮氨酸替换为苯丙氨酸是一种相对保守的替换,是法裔加拿大男性中16%(19人中有3人)存在的TBG多态性。它对普通型TBG(TBG-C)的血清浓度或特性没有影响。新的亮氨酸替换为脯氨酸预计会改变TBG的高级结构,可能是所研究个体以及另外两个患有TBG-CD的家族出现TBG-CD表型的原因。它可能损害TBG的生物合成或分泌,或者可能使TBG结构改变到如此程度,以至于该分子不被针对天然或变性TBG的抗体识别,也不结合T4。

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