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棕色脂肪组织形态和功能的内在年周期性调节与冬眠相协调。

Intrinsic circannual regulation of brown adipose tissue form and function in tune with hibernation.

机构信息

Cell and Developmental Biology, University of Colorado School of Medicine, Aurora, Colorado.

出版信息

Am J Physiol Endocrinol Metab. 2014 Feb;306(3):E284-99. doi: 10.1152/ajpendo.00431.2013. Epub 2013 Dec 10.

Abstract

Winter hibernators repeatedly cycle between cold torpor and rewarming supported by nonshivering thermogenesis in brown adipose tissue (BAT). In contrast, summer animals are homeotherms, undergoing reproduction, growth, and fattening. This life history confers variability to BAT recruitment and activity. To address the components underlying prewinter enhancement and winter activation, we interrogated the BAT proteome in 13-lined ground squirrels among three summer and five winter states. We also examined mixed physiology in fall and spring individuals to test for ambient temperature and seasonal effects, as well as the timing of seasonal transitions. BAT form and function differ circannually in these animals, as evidenced by morphology and proteome dynamics. This intrinsic pattern distinguished homeothermic groups and early vs. late winter hibernators. Homeothermic variation derived from postemergence delay in growth and substrate biosynthesis. The heterothermic proteome varied less despite extreme winter physiological shifts and was optimized to exploit lipids by enhanced fatty acid binding, β-oxidation, and mitochondrial protein translocation. Surprisingly, ambient temperature did not affect the BAT proteome during transition seasons; rather, the pronounced summer-winter shift preceded environmental changes and phenotypic progression. During fall transition, differential regulation of two fatty acid binding proteins provides further evidence of recruitment and separates proteomic preparation from successful hibernation. Abundance of FABP4 correlates with torpor bout length throughout the year, clarifying its potential function in hibernation. Metabolically active BAT is a target for treating human obesity and metabolic disorders. Understanding the hibernator's extreme and seasonally distinct recruitment and activation control strategies offers untapped potential to identify novel, therapeutically relevant regulatory pathways.

摘要

冬季休眠动物通过棕色脂肪组织(BAT)中的非颤抖性产热反复经历寒冷蛰伏和复温循环。相比之下,夏季动物是恒温动物,经历繁殖、生长和育肥。这种生活史赋予 BAT 募集和活动的可变性。为了解决冬眠前增强和冬季激活的基础成分,我们在三种夏季和五种冬季状态的 13 条纹地松鼠中研究了 BAT 蛋白质组。我们还检查了秋季和春季个体的混合生理学,以测试环境温度和季节性影响,以及季节性过渡的时间。这些动物的 BAT 形态和功能每年都会发生变化,这可以从形态和蛋白质组动力学上得到证明。这种内在模式将恒温动物群体和早期与晚期冬眠者区分开来。恒温动物的变异性源自生长和基质生物合成的后期出现。尽管经历了极端的冬季生理变化,但异温动物的蛋白质组变化较小,通过增强脂肪酸结合、β-氧化和线粒体蛋白转位来优化对脂质的利用。令人惊讶的是,环境温度在过渡季节不会影响 BAT 蛋白质组;相反,明显的夏季到冬季的转变先于环境变化和表型进展。在秋季过渡期间,两种脂肪酸结合蛋白的差异调节提供了募集的进一步证据,并将蛋白质组准备与成功的冬眠分开。FABP4 的丰度与全年的蛰伏时间相关,这阐明了其在冬眠中的潜在功能。代谢活跃的 BAT 是治疗人类肥胖和代谢紊乱的目标。了解休眠动物极端和季节性独特的募集和激活控制策略提供了尚未开发的潜力,以确定新的、治疗相关的调节途径。

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