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碘化物有机化缺陷导致先天性甲状腺肿性甲状腺功能减退症。

Defective organification of iodide causing congenital goitrous hypothyroidism.

作者信息

Ishikawa N, Eguchi K, Ohmori T, Momotani N, Nagayama Y, Hosoya T, Oguchi H, Mimura T, Kimura S, Nagataki S, Ito K

机构信息

Ito Hospital, Tokyo, Japan.

出版信息

J Clin Endocrinol Metab. 1996 Jan;81(1):376-83. doi: 10.1210/jcem.81.1.8550781.

Abstract

A 26-yr-old Japanese woman with congenital goitrous hypo-thyroidism and sensorineural deafness underwent a thyroidectomy. Examination of the thyroid gland revealed characteristic features of multinodular goiter. The T3 and T4 content in thyroglobulin (Tg) were 0.03 and 0.02 mol/mol Tg, respectively. Iodide incorporation into Tg, using slices of the thyroid tissue, revealed that iodide organification of thyroid tissue from our patient was markedly lower than that of normal controls. Then, guaiacol and iodide oxidation activities of thyroid peroxidase (TPO) in our patient's thyroid tissue were lower than those of normal controls (guaiacol assay: 1.92 vs. 30.0 +/- 5.7 mGU/mg protein; iodide assay: 1.1 vs. 6.6 +/- 2.8 mIU/mg protein). Lineweaver-Burk plot analysis of the oxidation rates of guaiacol and iodide indicated that this patient's TPO had a defect in the binding of guaiacol and iodide, but the coupling activity of the patient's TPO was not decreased compared with those of two normal thyroids. In this case and in control subjects, Nothern gel analysis of TPO messenger RNA from unstimulated and TSH-stimulated thyroid cells revealed a 3.2 kilobase species in the former and four distinct messenger RNA species of 4.0, 3.2, 2.1, and 1.7 kilobases in the latter. Western blot analysis of TPOs obtained from this patient and from control subjects identified the same 107 kDa protein, using antimicrosomal antibody-positive serum. We analyzed the coding sequence in the patient's TPO gene by using polymerase chain reaction technique. A single point mutation of G-->C at 1265 base pair was detected only in the TPO gene, but this point mutation does not alter the amino acid residue. It is possible that posttranslational modification such as abnormal glycosylation may occur in the TPO molecules. Furthermore, it is possible that there are differences in the tertiary structures of the TPO molecules between our patient and normal subjects. The above abnormalities of TPO molecules may play an important role in our patient's dyshormonogenesis.

摘要

一名患有先天性甲状腺肿性甲状腺功能减退症和感音神经性耳聋的26岁日本女性接受了甲状腺切除术。对甲状腺的检查显示出多结节性甲状腺肿的特征性表现。甲状腺球蛋白(Tg)中的T3和T4含量分别为0.03和0.02 mol/mol Tg。使用甲状腺组织切片进行碘掺入Tg的实验表明,该患者甲状腺组织的碘有机化明显低于正常对照组。然后,该患者甲状腺组织中甲状腺过氧化物酶(TPO)的愈创木酚和碘氧化活性低于正常对照组(愈创木酚测定:1.92对30.0±5.7 mGU/mg蛋白质;碘测定:1.1对6.6±2.8 mIU/mg蛋白质)。对愈创木酚和碘氧化速率的Lineweaver-Burk图分析表明,该患者的TPO在愈创木酚和碘的结合方面存在缺陷,但与两个正常甲状腺相比,该患者TPO的偶联活性并未降低。在该病例和对照受试者中,对未刺激和TSH刺激的甲状腺细胞的TPO信使RNA进行Northern凝胶分析,在前一种情况下显示出一个3.2千碱基的条带,在后一种情况下显示出四个不同的信使RNA条带,大小分别为4.0、3.2、2.1和1.7千碱基。使用抗微粒体抗体阳性血清对该患者和对照受试者获得的TPO进行Western印迹分析鉴定出相同的107 kDa蛋白质。我们使用聚合酶链反应技术分析了该患者TPO基因中的编码序列。仅在TPO基因中检测到1265碱基对处的G→C单点突变,但该点突变不会改变氨基酸残基。有可能在TPO分子中发生异常糖基化等翻译后修饰。此外,该患者与正常受试者之间的TPO分子三级结构可能存在差异。TPO分子的上述异常可能在该患者的激素合成障碍中起重要作用。

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