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骨骼肌中过表达脂蛋白脂肪酶的转基因小鼠在冷暴露时体温调节增强:一种鸟类表型?

Increased thermoregulation in cold-exposed transgenic mice overexpressing lipoprotein lipase in skeletal muscle: an avian phenotype?

作者信息

Jensen Dalan R, Knaub Leslie A, Konhilas John P, Leinwand Leslie A, MacLean Paul S, Eckel Robert H

机构信息

Division of Endocrinology, Diabetes, and Metabolism, University of Colorado at Denver, Aurora, CO, USA.

出版信息

J Lipid Res. 2008 Apr;49(4):870-9. doi: 10.1194/jlr.M700519-JLR200. Epub 2008 Jan 5.

Abstract

LPL is an enzyme involved in the breakdown and uptake of lipoprotein triglycerides. In the present study, we examined how the transgenic (Tg) overexpression of human LPL in mouse skeletal muscle affected tolerance to cold temperatures, cold-induced thermogenesis, and fuel utilization during this response. Tg mice and their nontransgenic controls were placed in an environmental chamber and housed in metabolic chambers that monitored oxygen consumption and carbon dioxide production with calorimetry. When exposed to 4 degrees C, an attenuation in the decline in body temperature in Tg mice was accompanied by an increased metabolic rate (15%; P < 0.001) and a reduction in respiratory quotient (P < 0.05). Activity levels, the expression of uncoupling proteins in brown fat and muscle, and lean mass failed to explain the enhanced cold tolerance and thermogenesis in Tg mice. The more oxidative type IIa fibers were favored over the more glycolytic type IIb fibers (P < 0.001) in the gastrocnemius and quadriceps muscles of Tg mice. These data suggest that Tg overexpression of LPL in skeletal muscle increases cold tolerance by enhancing the capacity for fat oxidation, producing an avian-like phenotype in which skeletal muscle contributes significantly to the thermogenic response to cold temperatures.

摘要

脂蛋白脂肪酶(LPL)是一种参与脂蛋白甘油三酯分解和摄取的酶。在本研究中,我们检测了小鼠骨骼肌中人类LPL的转基因(Tg)过表达如何影响对低温的耐受性、冷诱导的产热以及该反应过程中的燃料利用。将Tg小鼠及其非转基因对照置于环境舱中,并饲养在通过量热法监测氧气消耗和二氧化碳产生的代谢舱中。当暴露于4摄氏度时,Tg小鼠体温下降的减弱伴随着代谢率的增加(15%;P<0.001)和呼吸商的降低(P<0.05)。活动水平、棕色脂肪和肌肉中解偶联蛋白的表达以及瘦体重均无法解释Tg小鼠增强的耐寒性和产热。在Tg小鼠的腓肠肌和股四头肌中,氧化性更强的IIa型纤维比糖酵解性更强的IIb型纤维更占优势(P<0.001)。这些数据表明,骨骼肌中LPL的Tg过表达通过增强脂肪氧化能力来提高耐寒性,产生一种类似鸟类的表型,其中骨骼肌对低温的产热反应有显著贡献。

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