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促甲状腺激素释放激素对正常及甲状腺功能减退大鼠垂体中促甲状腺激素亚基生物合成和糖基化的调节作用

Thyrotropin (TSH)-releasing hormone regulation of TSH subunit biosynthesis and glycosylation in normal and hypothyroid rat pituitaries.

作者信息

Taylor T, Weintraub B D

出版信息

Endocrinology. 1985 May;116(5):1968-76. doi: 10.1210/endo-116-5-1968.

Abstract

The regulation of TSH apoprotein and carbohydrate biosynthesis by TRH was studied by incubating pituitaries from normal and hypothyroid (3 weeks postthyroidectomy) rats in medium containing varying doses of TRH, [14C] alanine or [35S]methionine, and [3H]glucosamine. Samples were sequentially treated with anti-TSH beta to precipitate TSH and free TSH beta, anti-LH beta to remove LH and free LH beta, and anti-LH alpha to precipitate free alpha-subunits. Total proteins were acid precipitated. All precipitates were analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. In hypothyroid samples, acute TRH (6 h) stimulated [3H] glucosamine incorporation into secreted combined alpha-subunit to 204% and secreted combined beta-subunit to 227% of control values (P less than 0.01), and stimulated [14C]alanine incorporation into secreted combined alpha-subunit to 201% and secreted combined beta-subunit to 258% of control values (P less than 0.01); pituitary content was not altered by TRH. In hypothyroid incubates, the half-maximal response was 8 X 10(-10) M TRH for both labeled precursors. In contrast, in normal samples, acute TRH (6 H) did not stimulate TSH subunit carbohydrate and apoprotein synthesis, but after 24 h, TRH stimulated [3H]glucosamine incorporation into both subunits of TSH to 270% of control values (P less than 0.02), with no change in [14C]alanine incorporation. Free alpha-subunit synthesis was not altered by TRH in normal or hypothyroid incubates. The glucosamine to alanine ratio of total newly synthesized TSH, reflecting its relative glycosylation, was increased by TRH in both combined subunits in hypothyroid samples as early as 6 h (P less than 0.05) and in normal samples only at 24 h (P less than 0.01). In summary, 1) TRH in hypothyroid incubates stimulated apoprotein and carbohydrate synthesis in combined alpha- and beta-subunits, but not free alpha-subunits, at 6 and 24 h. 2) In normal pituitary incubates, TRH stimulated TSH subunit carbohydrate, but not apoprotein, synthesis only at 24 h. 3) TRH increased the relative glycosylation of TSH in hypothyroid and normal rat pituitary incubates. Such alterations in TSH glycosylation may be due to structural changes in the carbohydrate moiety and may be important for hormone release, biological activity, or clearance.

摘要

通过将正常和甲状腺功能减退(甲状腺切除术后3周)大鼠的垂体在含有不同剂量促甲状腺激素释放激素(TRH)、[14C]丙氨酸或[35S]甲硫氨酸以及[3H]葡糖胺的培养基中孵育,研究TRH对促甲状腺激素(TSH)载脂蛋白和碳水化合物生物合成的调节作用。样品依次用抗TSHβ沉淀TSH和游离TSHβ,用抗促黄体生成素(LH)β去除LH和游离LHβ,并用抗LHα沉淀游离α亚基。总蛋白用酸沉淀。所有沉淀物通过十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳进行分析。在甲状腺功能减退的样品中,急性TRH(6小时)刺激[3H]葡糖胺掺入分泌的结合α亚基至对照值的204%,分泌的结合β亚基至对照值的227%(P小于0.01),并刺激[14C]丙氨酸掺入分泌的结合α亚基至对照值的201%,分泌的结合β亚基至对照值的258%(P小于0.01);垂体含量未被TRH改变。在甲状腺功能减退的孵育物中,两种标记前体的半数最大反应均为8×10^(-10) M TRH。相比之下,在正常样品中,急性TRH(6小时)未刺激TSH亚基碳水化合物和载脂蛋白合成,但24小时后,TRH刺激[3H]葡糖胺掺入TSH的两个亚基至对照值的270%(P小于0.02),[14C]丙氨酸掺入无变化。在正常或甲状腺功能减退的孵育物中,游离α亚基合成未被TRH改变。反映其相对糖基化的新合成TSH总葡糖胺与丙氨酸的比率,在甲状腺功能减退样品中,早在6小时时,TRH就使两个结合亚基中的该比率增加(P小于0.05),而在正常样品中仅在24小时时增加(P小于0.01)。总之,1)在甲状腺功能减退的孵育物中,TRH在6小时和24小时时刺激结合α和β亚基中的载脂蛋白和碳水化合物合成,但不刺激游离α亚基。2)在正常垂体孵育物中,TRH仅在24小时时刺激TSH亚基碳水化合物而非载脂蛋白合成。3)TRH增加甲状腺功能减退和正常大鼠垂体孵育物中TSH的相对糖基化。TSH糖基化的这种改变可能是由于碳水化合物部分的结构变化,并且可能对激素释放、生物活性或清除很重要。

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