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三碘甲状腺原氨酸(T(3))刺激小鼠的静息代谢以及解偶联蛋白2(UCP-2)和解偶联蛋白3(UCP-3)的信使核糖核酸(mRNA),但不刺激非磷酸化线粒体呼吸。

T(3) stimulates resting metabolism and UCP-2 and UCP-3 mRNA but not nonphosphorylating mitochondrial respiration in mice.

作者信息

Jekabsons M B, Gregoire F M, Schonfeld-Warden N A, Warden C H, Horwitz B A

机构信息

Section of Neurobiology, Physiology, and Behavior, Division of Biological Sciences, School of Medicine, University of California, Davis, California 95616, USA.

出版信息

Am J Physiol. 1999 Aug;277(2):E380-9. doi: 10.1152/ajpendo.1999.277.2.E380.

Abstract

The molecular basis for variations in resting metabolic rate (RMR) within a species is unknown. One possibility is that variations in RMR occur because of variations in uncoupling protein 2 (UCP-2) and uncoupling protein 3 (UCP-3) expression, resulting in mitochondrial proton leak differences. We tested the hypothesis that UCP-2 and -3 mRNAs positively correlate with RMR and proton leak. We treated thyroidectomized and sham-operated mice with triiodothyronine (T(3)) or vehicle and measured RMR, liver, and skeletal muscle mitochondrial nonphosphorylating respiration and UCP-2 and -3 mRNAs. T(3) stimulated RMR and liver UCP-2 and gastrocnemius UCP-2 and -3 expression. Mitochondrial respiration was not affected by T(3) and did not correlate with UCP-2 and -3 mRNAs. Gastrocnemius UCP-2 and -3 expression did correlate with RMR. We conclude 1) T(3) did not influence intrinsic mitochondrial properties such as membrane structure and composition, and 2) variations in UCP-2 and -3 expression may partly explain variations in RMR. One possible explanation for these data is that T(3) stimulates the leak in vivo but not in vitro because a posttranslational regulator of UCP-2 and -3 is not retained in the mitochondrial fraction.

摘要

一个物种静息代谢率(RMR)变化的分子基础尚不清楚。一种可能性是,RMR的变化是由于解偶联蛋白2(UCP - 2)和解偶联蛋白3(UCP - 3)表达的变化,导致线粒体质子泄漏差异。我们检验了UCP - 2和 - 3 mRNA与RMR和质子泄漏呈正相关的假设。我们用三碘甲状腺原氨酸(T(3))或赋形剂处理甲状腺切除和假手术的小鼠,并测量RMR、肝脏和骨骼肌线粒体非磷酸化呼吸以及UCP - 2和 - 3 mRNA。T(3)刺激RMR以及肝脏UCP - 2和腓肠肌UCP - 2和 - 3的表达。线粒体呼吸不受T(3)影响,且与UCP - 2和 - 3 mRNA不相关。腓肠肌UCP - 2和 - 3的表达确实与RMR相关。我们得出结论:1)T(3)不影响线粒体的内在特性,如膜结构和组成;2)UCP - 2和 - 3表达的变化可能部分解释了RMR的变化。这些数据的一个可能解释是,T(3)在体内而非体外刺激泄漏,因为UCP - 2和 - 3的翻译后调节因子未保留在线粒体部分。

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