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大鼠发育过程中的垂体核三碘甲状腺原氨酸受体

Pituitary nuclear triiodothyronine receptors during development in the rat.

作者信息

Coulombe P, Ruel J, Faure R, Dussault J H

出版信息

Am J Physiol. 1983 Jul;245(1):E81-6. doi: 10.1152/ajpendo.1983.245.1.E81.

Abstract

Studies were undertaken to measure the pituitary nuclear triiodothyronine (T3) binding capacity (BC) during development in the rat. BC was measured in 0.4 M NaCl-solubilized receptors in 5-, 14-, 20-, 27-, 30-, 40-, 50-day-old rats and in adult animals. Results indicate that BC is lower in 5-day-old rats than in adult animals (0.397 +/- 0.02 vs. 0.797 +/- 0.06 pmol T3/mg protein) (mean +/- SE) (P less than 0.01). Hypothyroidism, induced during the neonatal period or in the adult animal, results in a significant decrease in BC (P less than 0.01) when compared with control rats. However, treatment of hypothyroid animals with T3 (0.4 micrograms/100 g body wt) for a period of 7-14 days significantly increased BC as compared with hypothyroid rats without apparent changes in Ka. The relative affinities of various thyroid hormone analogues for the nuclear receptor were also measured in the adult animal. The affinities of these analogues are in the following order: TRIAC greater than L-T3 greater than D-T3 greater than L-T4 greater than D-T4 greater than DIMIT greater than L-T2 greater than rT3. The present findings demonstrate the presence of high affinity nuclear T3 binding sites in the pituitary of neonatal rat and could thus account for the effects of thyroid hormones on GH synthesis and TSH secretion observed in these animals.

摘要

开展了多项研究以测定大鼠发育过程中垂体核三碘甲状腺原氨酸(T3)结合能力(BC)。在5日龄、14日龄、20日龄、27日龄、30日龄、40日龄、50日龄大鼠以及成年动物中,对0.4M NaCl溶解的受体中的BC进行了测定。结果表明,5日龄大鼠的BC低于成年动物(0.397±0.02对0.797±0.06 pmol T3/mg蛋白质)(平均值±标准误)(P<0.01)。新生期或成年动物诱导产生的甲状腺功能减退,与对照大鼠相比,导致BC显著降低(P<0.01)。然而,用T3(0.4微克/100克体重)治疗甲状腺功能减退动物7 - 14天,与甲状腺功能减退大鼠相比,BC显著增加,而Ka无明显变化。还在成年动物中测定了各种甲状腺激素类似物对核受体的相对亲和力。这些类似物的亲和力顺序如下:三碘乙酸(TRIAC)>左旋T3>L - T3>右旋T3>L - T4>右旋T4>二碘甲腺原氨酸(DIMIT)>左旋T2>反三碘甲状腺原氨酸(rT3)。目前的研究结果表明新生大鼠垂体中存在高亲和力核T3结合位点,因此可以解释甲状腺激素对这些动物生长激素合成和促甲状腺激素分泌的影响。

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