Golozoubova Valeria, Cannon Barbara, Nedergaard Jan
The Wenner-Gren Institute, The Arrhenius Laboratories F3, Stockholm University, SE-106 91, Stockholm, Sweden.
Am J Physiol Endocrinol Metab. 2006 Aug;291(2):E350-7. doi: 10.1152/ajpendo.00387.2005. Epub 2006 Apr 4.
Participation of brown adipose tissue [through the action of the uncoupling protein-1 (UCP1)] in adaptive adrenergic nonshivering thermogenesis is recognized, but the existence of a response to adrenergic stimulation in UCP1-ablated mice implies that a mechanism for an alternative adaptive adrenergic thermogenesis may exist. Here, we have used UCP1-ablated mice to examine the existence of an alternative adaptive adrenergic nonshivering thermogenesis, examined as the oxygen consumption response to systemically injected norepinephrine into anesthetized or conscious mice acclimated to different temperatures. We confirm that UCP1-dependent adrenergic nonshivering thermogenesis is adaptive, but we demonstrate that the adrenergic UCP1-independent thermogenesis is not recruitable by cold acclimation. Thus, at least in the mouse, no other proteins or enzymatic pathways exist that can participate in or with time take over the UCP1 mediation of adaptive adrenergic nonshivering thermogenesis, even in the total absence of UCP1. UCP1 is thus the only protein capable of mediating cold acclimation-recruited adaptive adrenergic nonshivering thermogenesis.
棕色脂肪组织通过解偶联蛋白1(UCP1)的作用参与适应性肾上腺素能非颤抖产热已得到认可,但UCP1基因敲除小鼠对肾上腺素能刺激有反应,这意味着可能存在一种替代性适应性肾上腺素能产热机制。在此,我们利用UCP1基因敲除小鼠来研究替代性适应性肾上腺素能非颤抖产热的存在情况,通过检测适应不同温度的麻醉或清醒小鼠经全身注射去甲肾上腺素后的耗氧反应来进行研究。我们证实依赖UCP1的肾上腺素能非颤抖产热具有适应性,但我们也证明,冷适应并不能诱导不依赖UCP1的肾上腺素能产热。因此,至少在小鼠中,即使完全没有UCP1,也不存在其他能够参与或随着时间推移取代UCP1介导适应性肾上腺素能非颤抖产热的蛋白质或酶促途径。因此,UCP1是唯一能够介导冷适应诱导的适应性肾上腺素能非颤抖产热的蛋白质。