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通过放射自显影术研究促甲状腺激素对大鼠甲状腺滤泡碘化作用的影响。

Effects of TSH on iodination in rat thyroid follicles studied by autoradiography.

作者信息

Ofverholm T, Björkman U, Ericson L E

出版信息

Mol Cell Endocrinol. 1985 Apr;40(1):1-7. doi: 10.1016/0303-7207(85)90151-0.

Abstract

The possible functional relation between TSH-stimulated exocytosis and TSH-stimulated iodination in the thyroid gland was studied using quantitative EM autoradiography and cytochemistry. The study was performed in rats pretreated with thyroxine for 2 days. TSH, giving i.v. 10 min before sacrifice to thyroxine-treated rats, increased organification of 125I by about 50%. TSH decreased the number of peroxidase-positive vesicles in the apical cytoplasm and increased the width of the peroxidase reaction at the apical plasma membrane, suggesting a redistribution of peroxidase. EM autoradiography after labelling with [3H]leucine showed that TSH caused a rapid redistribution by exocytosis of newly synthesized protein to the follicle lumen. The protein deposited in the lumen remained to a large extent in the microvillus region. 10 min after injection of 125I, newly iodinated protein was distributed in a gradient in the lumen periphery. TSH, given 5 min before 125I, caused a significant increase in the labelling of the colloid in the microvillus region, indicating a selective incorporation of iodine into newly synthesized molecules deposited in this region by stimulated exocytosis. Our results confirm and extend earlier observations on a functional link between exocytosis and iodination. Redistribution of peroxidase as well as newly synthesized protein to the site of iodination might be of importance.

摘要

利用定量电子显微镜放射自显影术和细胞化学方法,研究了促甲状腺激素(TSH)刺激的甲状腺胞吐作用与TSH刺激的碘化作用之间可能的功能关系。该研究在经甲状腺素预处理2天的大鼠中进行。在处死前10分钟静脉注射TSH给甲状腺素处理的大鼠,可使125I的有机化增加约50%。TSH减少了顶端细胞质中过氧化物酶阳性小泡的数量,并增加了顶端质膜上过氧化物酶反应的宽度,提示过氧化物酶发生了重新分布。用[3H]亮氨酸标记后的电子显微镜放射自显影显示,TSH通过将新合成的蛋白质胞吐到滤泡腔中,导致其快速重新分布。沉积在腔内的蛋白质在很大程度上保留在微绒毛区域。注射125I后10分钟,新碘化的蛋白质在腔周边呈梯度分布。在注射125I前5分钟给予TSH,可使微绒毛区域胶体的标记显著增加,表明碘被选择性地掺入到通过刺激胞吐作用沉积在该区域的新合成分子中。我们的结果证实并扩展了关于胞吐作用与碘化作用之间功能联系的早期观察结果。过氧化物酶以及新合成蛋白质向碘化部位的重新分布可能具有重要意义。

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