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玉米赤霉醇对L6肌管中蛋白质周转的影响。

Effects of zeranol on protein turnover in L6 myotubes.

作者信息

Roeder R A, Gunn J M

机构信息

Department of Animal Science, University of Idaho, Moscow 83843.

出版信息

Domest Anim Endocrinol. 1987 Jan;4(1):61-7. doi: 10.1016/0739-7240(87)90039-7.

Abstract

Protein synthesis and degradation were measured in cultures of L6 myotubes to determine the direct anabolic activity of zeranol on muscle. Zeranol, dexamethasone, insulin and zeranol-dexamethasone combination, at various concentrations from 10(-8) to 10(-6) M, were added to cultures at either 18 hr prior to or at the beginning of a 6 hr synthesis or degradation measuring period. Protein synthesis was measured by determining the incorporation of radioactivity into trichloraoacetic acid precipitable cell protein following incubation with [3H] leucine. Protein synthesis was expressed as cpm incorporated in 6 hr per mg protein. Protein degradation was measured by a pulse-chase procedure using [3H] leucine. Protein degradation was expressed as the percent labeled protein degraded in 6 hr. Results from the study indicate that zeranol did not stimulate protein synthesis or inhibit proteolysis (P greater than .01). Stimulation of proteolysis observed with 10(-8) M dexamethasone was 13% and 18% (P less than .01) at the 6 hr and 24 hr incubation period, respectively. Dexamethasone-stimulated protein degradation was not altered appreciably by zeranol. In contrast, 10(-6) M insulin significantly (P less than .01) stimulated protein synthesis (16%) and inhibited protein degradation (15%). These results suggest that the anabolic action of zeranol does not occur by directly regulating muscle protein synthesis or degradation, or by altering the glucocorticoid-induced catabolic response in muscle.

摘要

在L6肌管培养物中测量蛋白质合成和降解,以确定玉米赤霉醇对肌肉的直接合成代谢活性。将浓度为10(-8)至10(-6)M的玉米赤霉醇、地塞米松、胰岛素以及玉米赤霉醇 - 地塞米松组合,在6小时合成或降解测量期开始前18小时或开始时添加到培养物中。通过测定与[3H]亮氨酸孵育后三氯乙酸可沉淀细胞蛋白中的放射性掺入来测量蛋白质合成。蛋白质合成以每毫克蛋白质在6小时内掺入的cpm表示。使用[3H]亮氨酸通过脉冲追踪程序测量蛋白质降解。蛋白质降解以6小时内降解的标记蛋白质百分比表示。研究结果表明,玉米赤霉醇不会刺激蛋白质合成或抑制蛋白水解(P大于0.01)。在6小时和24小时孵育期,10(-8)M地塞米松观察到的蛋白水解刺激分别为13%和18%(P小于0.01)。玉米赤霉醇对地塞米松刺激的蛋白质降解没有明显改变。相比之下,10(-6)M胰岛素显著(P小于0.01)刺激蛋白质合成(16%)并抑制蛋白质降解(15%)。这些结果表明,玉米赤霉醇的合成代谢作用不是通过直接调节肌肉蛋白质合成或降解,也不是通过改变糖皮质激素诱导的肌肉分解代谢反应来实现的。

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