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对先前已接触该激素的甲状腺切片中促甲状腺激素刺激蛋白激酶、葡萄糖氧化及磷脂合成的抑制作用。

Inhibition of thyroid-stimulating hormone stimulation of protein kinase, glucose oxidation, and phospholipid synthesis in thyroid slices previously exposed to the hormone.

作者信息

Field J B, Bloom G, Chou C, Kerins M E

出版信息

J Clin Invest. 1977 Apr;59(4):659-65. doi: 10.1172/JCI108684.

Abstract

Prior exposure of thyroid slices to thyrotropin (TSH) induced refractoriness to subsequent stimulation of the cyclic AMP system by the hormone. Although the inhibition is incomplete, we examined whether the reduction in cyclic AMP was sufficient to alter other metabolic effects of TSH. Bovine or dog thyroid slices were incubated with or without 5-100 mU/ml TSH for 1-2h, washed, and then incubated without hormone for 1-2h. Half of the slices not exposed to TSH initially were then incubated with buffer and half were exposed to 5-100 mU/ml TSH. Slices initially incubated with TSH were also incubated with or without TSH in the third incubation. During the refractory period, TSH activation of protein kinase was inhibited even though the hormone still caused some increase in cyclic AMP concentrations. However, protein kinase activity was fully responsive to dibutyryl cyclic AMP when slices were incubated with it during the third incubation. Stimulation of glucose oxidation by TSH was significantly decreased in thyroid slices previously incubated with the hormone. During refractoriness, stimulation of glucose oxidation caused by prostaglandin E1 and dibutyryl cyclic AMP was also significantly diminished but that due to acetylcholine was not. Thus even though dibutyryl cyclic AMP could fully activate protein kinase activity during refractoriness, its effect on glucose oxidation was still inhibited, suggesting that the metabolic block responsible for this refractoriness was distal to activation of protein kinase. Stimulation of 32Pi incorporation into phospholipid by TSH and acetylcholine was also inhibited during refractoriness. Despite reduction of the stimulatory effect of TSH, binding of 125ITSH was not modified by prior incubation of thyroid slices with TSH. These results indicate that changes in the TSH receptor are not responsible for the development of refractoriness and other metabolic sites besides activation of adenylate cyclase appear to be involved.

摘要

将甲状腺切片预先暴露于促甲状腺激素(TSH)会导致其对该激素随后刺激环磷酸腺苷(cAMP)系统产生不应性。尽管这种抑制并不完全,但我们研究了cAMP的减少是否足以改变TSH的其他代谢效应。将牛或犬的甲状腺切片在有或无5 - 100 mU/ml TSH的条件下孵育1 - 2小时,洗涤后,再在无激素的条件下孵育1 - 2小时。最初未暴露于TSH的切片一半随后用缓冲液孵育,另一半则暴露于5 - 100 mU/ml TSH。最初用TSH孵育的切片在第三次孵育时也分别在有或无TSH的条件下孵育。在不应期,尽管该激素仍使cAMP浓度有所升高,但TSH对蛋白激酶的激活受到抑制。然而,当切片在第三次孵育时与二丁酰环磷酸腺苷一起孵育时,蛋白激酶活性对其完全有反应。在先前用该激素孵育过的甲状腺切片中,TSH对葡萄糖氧化的刺激作用显著降低。在不应期,前列腺素E1和二丁酰环磷酸腺苷引起的葡萄糖氧化刺激也显著减弱,但乙酰胆碱引起的刺激则未受影响。因此,即使二丁酰环磷酸腺苷在不应期能完全激活蛋白激酶活性,其对葡萄糖氧化的作用仍受到抑制,这表明导致这种不应性的代谢阻滞发生在蛋白激酶激活的下游。在不应期,TSH和乙酰胆碱对32Pi掺入磷脂的刺激也受到抑制。尽管TSH的刺激作用减弱,但甲状腺切片预先与TSH孵育并未改变125I - TSH的结合。这些结果表明,TSH受体的变化与不应性的产生无关,除腺苷酸环化酶激活外的其他代谢位点似乎也参与其中。

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本文引用的文献

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Vitam Horm. 1971;29:287-412. doi: 10.1016/s0083-6729(08)60051-5.
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