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麦角生物碱和甾体植入剂对牛全身蛋白质周转及肌肉中mTOR信号通路蛋白表达的影响。

Impact of ergot alkaloid and steroidal implant on whole-body protein turnover and expression of mTOR pathway proteins in muscle of cattle.

作者信息

Ferguson Taylor D, Loos Caroline M M, Vanzant Eric S, Urschel Kristine L, Klotz James L, McLeod Kyle R

机构信息

Department of Animal and Food Sciences, University of Kentucky, Lexington, KY, United States.

Forage Animal Production Research Unit, Agricultural Research Service, United States Department of Agriculture, Lexington, KY, United States.

出版信息

Front Vet Sci. 2023 Apr 18;10:1104361. doi: 10.3389/fvets.2023.1104361. eCollection 2023.

Abstract

INTRODUCTION

Holstein steers ( = 32) were used to determine if the ergot analog, bromocriptine decreases muscle protein synthesis through inhibitory action on the mTOR pathway a direct effect on signal proteins, and if these negative effects can be alleviated with anabolic agents.

METHODS

Steers were treated with intramuscular administration of bromocriptine (vehicle or 0.1 mg/kg BW) and a subdermal commercial steroidal implant containing trenbolone acetate (TBA) and estradiol 17β (with or without), in a 2×2 factorial design. During the 35 day experiment, intake was restricted to 1.5 times maintenance energy requirement. On days 27 through 32, steers were moved to metabolism stalls for urine collection, and whole-body protein turnover was determined using a single pulse dose of [N] glycine into the jugular vein on day 28. On day 35, skeletal muscle samples were collected before (basal state) and 60 min after (stimulated state) an i.v. glucose challenge (0.25 g glucose/kg). Blood samples were collected at regular intervals before and after glucose infusion for determination of circulating concentrations of glucose and insulin.

RESULTS

Bromocriptine reduced insulin and glucose clearance following the glucose challenge, indicating decreased insulin sensitivity and possible disruption of glucose uptake and metabolism in the skeletal muscle. Conversely, analysis of whole-body protein turnover demonstrated that bromocriptine does not appear to affect protein synthesis or urea excretion. Western immunoblot analysis of skeletal muscle showed that it did not affect abundance of S6K1 or 4E-BP1, so bromocriptine does not appear to inhibit activation of the mTOR pathway or protein synthesis. Estradiol/TBA implant decreased urea excretion and protein turnover but had no effect on protein synthesis, suggesting that steroidal implants promote protein accretion through unchanged rates of synthesis and decreased degradation, even in the presence of bromocriptine, resulting in improved daily gains. Implanted steers likely experienced increased IGF-1 signaling, but downstream activation of mTOR, S6K and 4E-BP1, and thus increased protein synthesis did not occur as expected.

CONCLUSIONS

Overall, this data suggests that bromocriptine does not have a negative impact on muscle protein synthetic pathways independent of DMI.

摘要

引言

使用32头荷斯坦公牛来确定麦角类似物溴隐亭是否通过对mTOR途径的抑制作用、对信号蛋白的直接作用来降低肌肉蛋白质合成,以及这些负面影响是否可以用合成代谢剂来缓解。

方法

采用2×2析因设计,对公牛进行肌肉注射溴隐亭(赋形剂或0.1毫克/千克体重)和皮下植入含醋酸特伦布尔酮(TBA)和17β-雌二醇的商用类固醇植入物(有或无)的处理。在为期35天的实验期间,采食量限制为维持能量需求的1.5倍。在第27天至32天,将公牛转移到代谢栏进行尿液收集,并在第28天通过向颈静脉单次注射脉冲剂量的[N]甘氨酸来测定全身蛋白质周转率。在第35天,在静脉注射葡萄糖激发(0.25克葡萄糖/千克)前(基础状态)和60分钟后(激发状态)采集骨骼肌样本。在葡萄糖输注前后定期采集血样,以测定循环中的葡萄糖和胰岛素浓度。

结果

溴隐亭降低了葡萄糖激发后的胰岛素和葡萄糖清除率,表明胰岛素敏感性降低,可能破坏了骨骼肌中的葡萄糖摄取和代谢。相反,全身蛋白质周转率分析表明,溴隐亭似乎不影响蛋白质合成或尿素排泄。骨骼肌的western免疫印迹分析表明,它不影响S6K1或4E-BP1的丰度,因此溴隐亭似乎不抑制mTOR途径的激活或蛋白质合成。雌二醇/TBA植入物减少了尿素排泄和蛋白质周转率,但对蛋白质合成没有影响,这表明类固醇植入物通过不变的合成速率和减少的降解来促进蛋白质积累,即使在存在溴隐亭的情况下也是如此,从而提高了日增重。植入的公牛可能经历了IGF-1信号增加,但mTOR、S6K和4E-BP1的下游激活以及因此预期的蛋白质合成增加并未发生。

结论

总体而言,这些数据表明,溴隐亭对独立于干物质采食量的肌肉蛋白质合成途径没有负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf29/10151678/7c0a353c96e8/fvets-10-1104361-g001.jpg

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