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肾上腺素合成的脑干和肾上腺昼夜节律模式比较。

Comparison of brainstem and adrenal circadian patterns of epinephrine synthesis.

作者信息

Turner B B, Wilens T E, Schroeder K A, Katz R J, Carroll B J

出版信息

Neuroendocrinology. 1981 May;32(5):257-61. doi: 10.1159/000123169.

Abstract

The enzyme which converts to norepinephrine to epinephrine, phenylethanolamine N-methyltransferase (PNMT), is found in brain as well as in the adrenal medulla. PNMT activity is subject to regulation by glucocorticoids, hormones which have a diurnal rhythm. We asked (1) whether a diurnal fluctuation exists in adrenal and brain PNMT activity and (2) what relationship this fluctuation might have to the diurnal rhythm in circulating glucocorticoids. Rats were sacrificed at 4-hour intervals over a 24-hour period. The PNMT activity in the adrenals and brainstems of these animals was determined by radioenzymatic assay, and the plasma levels of corticosterone were measured by competitive protein binding. No significant temporal variation was found in adrenal PNMT activity. Brainstem PNMT activity, however, showed a distinct diurnal fluctuation in activity, with a nadir at 7 a.m. and a peak at 3 p.m. The rise in brainstems PNMT clearly preceded by several hours the circadian rise in plasma corticosterone. We conclude that the circadian rhythm in circulating corticosterone does not drive the diurnal variation in brain PNMT activity. In unstressed animals, injection of exogenous corticosterone failed to elevate brainstem PNMT activity, whereas injection of specific inhibitors of PNMT activity significantly elevated plasma corticosterone levels. These data raise the possibility that the converse is true: changes in epinephrine synthesis may modulate the diurnal rhythm in pituitary-adrenal activity.

摘要

将去甲肾上腺素转化为肾上腺素的酶,即苯乙醇胺N -甲基转移酶(PNMT),在大脑和肾上腺髓质中均有发现。PNMT的活性受糖皮质激素调节,而糖皮质激素具有昼夜节律。我们研究了:(1)肾上腺和大脑中的PNMT活性是否存在昼夜波动;(2)这种波动与循环糖皮质激素的昼夜节律有何关系。在24小时内每隔4小时处死一批大鼠。通过放射酶法测定这些动物肾上腺和脑干中的PNMT活性,并通过竞争性蛋白结合法测量血浆皮质酮水平。肾上腺PNMT活性未发现明显的时间变化。然而,脑干PNMT活性表现出明显的昼夜波动,上午7点活性最低,下午3点活性最高。脑干PNMT活性的升高明显早于血浆皮质酮的昼夜升高数小时。我们得出结论,循环皮质酮的昼夜节律并不驱动大脑PNMT活性的昼夜变化。在未受应激的动物中,注射外源性皮质酮未能提高脑干PNMT活性,而注射PNMT活性的特异性抑制剂则显著提高了血浆皮质酮水平。这些数据增加了一种可能性,即反之亦然:肾上腺素合成的变化可能调节垂体 - 肾上腺活动的昼夜节律。

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