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先天性甲状腺肿伴甲状腺球蛋白合成缺陷时甲状腺过氧化物酶和甲状腺球蛋白信使核糖核酸的差异水平

Differential levels of thyroid peroxidase and thyroglobulin messenger ribonucleic acids in congenital goiter with defective thyroglobulin synthesis.

作者信息

Targovnik H M, Varela V, Juvenal G J, Propato F, Chester H A, Krawiec L, Frechtel G, Moran D H, Perinetti H A, Pisarev M A

机构信息

Laboratorio de Biologia Molecular, Hospital de Clinicas José de San Martin, Buenos Aires, Argentina.

出版信息

J Endocrinol Invest. 1990 Nov;13(10):797-806. doi: 10.1007/BF03349625.

Abstract

The biosynthesis of thyroid hormones requires iodide, thyroid peroxidase (TPO), thyroglobulin (Tg) and H2O2. We have studied two sisters with congenital large goiters and hypothyroidism. Perchlorate tests were negative. Serum T3 and T4 were decreased, TSH was increased and Tg was within the lower limit of normal. Biochemical and molecular studies were performed on goiter samples obtained after surgery. Tg content in both tissues was negligible. Paper chromatography of labeled iodocompounds showed a decrease in T4, and the presence of a pronase/pancreatin-resistant iodoprotein. TPO activity was normal in the tissues. Sephacryl S-300 gel filtration demonstrated labeled iodoalbumin-like protein and the absence of a Tg peak. Salting out studies of soluble protein fraction gave an abnormal pattern. Agarose gel electrophoresis showed the presence of an iodoalbumin-like protein and the absence of Tg in the tissues. This last finding was confirmed by immunoelectrophoresis. The Tg and TPO mRNAs levels were also analyzed. Dot-blot hybridization studies with pM5 (TPO cDNA) and phTgM2 (Tg cDNA) probes showed increased and decreased signals, respectively. The increase in TPO mRNA can be explained as a compensatory mechanism vis a vis an increase in serum TSH caused by decreased serum T3 and T4 due to the impairment in Tg mRNA. The Tg mRNA of both patients was further studied with four different probes covering 5' and 3' regions (phTgM1, phTgB1, phTgB2 and phTgB3). Hybridization was observed with all four probes, thus excluding a dramatic deletion defect. Northern transfer showed a clear signal of hybridization with the phTgB1 probe in the 8-9 Kb range. We may conclude that the biochemical and molecular abnormality of these patients is characterized by a decrease of Tg mRNA and of Tg translation.

摘要

甲状腺激素的生物合成需要碘、甲状腺过氧化物酶(TPO)、甲状腺球蛋白(Tg)和过氧化氢(H2O2)。我们研究了两名患有先天性大甲状腺肿和甲状腺功能减退的姐妹。过氯酸盐试验呈阴性。血清T3和T4降低,促甲状腺激素(TSH)升高,Tg在正常下限范围内。对手术后获得的甲状腺肿样本进行了生化和分子研究。两个组织中的Tg含量可忽略不计。标记碘化合物的纸层析显示T4减少,并且存在一种对链霉蛋白酶/胰酶有抗性的碘蛋白。组织中的TPO活性正常。Sephacryl S - 300凝胶过滤显示有标记的碘白蛋白样蛋白,且无Tg峰。可溶性蛋白组分的盐析研究呈现异常模式。琼脂糖凝胶电泳显示组织中存在碘白蛋白样蛋白且无Tg。免疫电泳证实了这一最终发现。还分析了Tg和TPO的mRNA水平。用pM5(TPO cDNA)和phTgM2(Tg cDNA)探针进行的点杂交研究分别显示信号增强和减弱。TPO mRNA的增加可解释为由于Tg mRNA受损导致血清T3和T4降低,进而引起血清TSH升高的一种代偿机制。用覆盖5'和3'区域的四种不同探针(phTgM1、phTgB1、phTgB2和phTgB3)对两名患者的Tg mRNA进行了进一步研究。所有四种探针均观察到杂交,从而排除了明显的缺失缺陷。Northern印迹显示在8 - 9 Kb范围内与phTgB1探针有明显的杂交信号。我们可以得出结论,这些患者的生化和分子异常特征是Tg mRNA和Tg翻译减少。

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