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敲除PGC-1β会导致线粒体活性、产热、肝功能和心脏功能出现缺陷。

Ablation of PGC-1beta results in defective mitochondrial activity, thermogenesis, hepatic function, and cardiac performance.

作者信息

Lelliott Christopher J, Medina-Gomez Gema, Petrovic Natasa, Kis Adrienn, Feldmann Helena M, Bjursell Mikael, Parker Nadeene, Curtis Keira, Campbell Mark, Hu Ping, Zhang Dongfang, Litwin Sheldon E, Zaha Vlad G, Fountain Kimberly T, Boudina Sihem, Jimenez-Linan Mercedes, Blount Margaret, Lopez Miguel, Meirhaeghe Aline, Bohlooly-Y Mohammad, Storlien Leonard, Strömstedt Maria, Snaith Michael, Oresic Matej, Abel E Dale, Cannon Barbara, Vidal-Puig Antonio

机构信息

Department of Clinical Biochemistry, University of Cambridge, Cambridge, United Kingdom.

出版信息

PLoS Biol. 2006 Nov;4(11):e369. doi: 10.1371/journal.pbio.0040369.

Abstract

The transcriptional coactivator peroxisome proliferator-activated receptor-gamma coactivator-1beta (PGC-1beta) has been implicated in important metabolic processes. A mouse lacking PGC-1beta (PGC1betaKO) was generated and phenotyped using physiological, molecular, and bioinformatic approaches. PGC1betaKO mice are generally viable and metabolically healthy. Using systems biology, we identified a general defect in the expression of genes involved in mitochondrial function and, specifically, the electron transport chain. This defect correlated with reduced mitochondrial volume fraction in soleus muscle and heart, but not brown adipose tissue (BAT). Under ambient temperature conditions, PGC-1beta ablation was partially compensated by up-regulation of PGC-1alpha in BAT and white adipose tissue (WAT) that lead to increased thermogenesis, reduced body weight, and reduced fat mass. Despite their decreased fat mass, PGC1betaKO mice had hypertrophic adipocytes in WAT. The thermogenic role of PGC-1beta was identified in thermoneutral and cold-adapted conditions by inadequate responses to norepinephrine injection. Furthermore, PGC1betaKO hearts showed a blunted chronotropic response to dobutamine stimulation, and isolated soleus muscle fibres from PGC1betaKO mice have impaired mitochondrial function. Lack of PGC-1beta also impaired hepatic lipid metabolism in response to acute high fat dietary loads, resulting in hepatic steatosis and reduced lipoprotein-associated triglyceride and cholesterol content. Altogether, our data suggest that PGC-1beta plays a general role in controlling basal mitochondrial function and also participates in tissue-specific adaptive responses during metabolic stress.

摘要

转录共激活因子过氧化物酶体增殖物激活受体γ共激活因子1β(PGC-1β)参与了重要的代谢过程。我们构建了一只缺乏PGC-1β的小鼠(PGC1βKO),并采用生理学、分子生物学和生物信息学方法对其进行表型分析。PGC1βKO小鼠总体上存活且代谢健康。利用系统生物学,我们发现参与线粒体功能尤其是电子传递链的基因表达存在普遍缺陷。这一缺陷与比目鱼肌和心脏中线粒体体积分数降低相关,但棕色脂肪组织(BAT)中未出现这种情况。在环境温度条件下,BAT和白色脂肪组织(WAT)中PGC-1α的上调部分补偿了PGC-1β的缺失,导致产热增加、体重减轻和脂肪量减少。尽管PGC1βKO小鼠的脂肪量减少,但WAT中的脂肪细胞肥大。通过对去甲肾上腺素注射反应不足,在热中性和冷适应条件下确定了PGC-1β的产热作用。此外,PGC1βKO心脏对多巴酚丁胺刺激的变时反应减弱,并且从PGC1βKO小鼠分离的比目鱼肌纤维线粒体功能受损。缺乏PGC-1β还会损害肝脏对急性高脂肪饮食负荷的脂质代谢,导致肝脂肪变性以及脂蛋白相关甘油三酯和胆固醇含量降低。总之,我们的数据表明PGC-1β在控制基础线粒体功能中起普遍作用,并且在代谢应激期间也参与组织特异性适应性反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0117/1637089/5c6e57599386/pbio.0040369.g003.jpg

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