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Nuclear Hormone Receptor NHR-49 Controls Fat Consumption and Fatty Acid Composition in C. elegans

机译:核激素受体NHR-49控制秀丽隐杆线虫的脂肪消耗和脂肪酸组成

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Mammalian nuclear hormone receptors (NHRs), such as liver X receptor, farnesoid X receptor, and peroxisome proliferator-activated receptors (PPARs), precisely control energy metabolism. Consequently, these receptors are important targets for the treatment of metabolic diseases, including diabetes and obesity. A thorough understanding of NHR fat regulatory networks has been limited, however, by a lack of genetically tractable experimental systems. Here we show that deletion of the Caenorhabditis elegans NHR gene nhr-49 yielded worms with elevated fat content and shortened life span. Employing a quantitative RT-PCR screen, we found that nhr-49 influenced the expression of 13 genes involved in energy metabolism. Indeed, nhr-49 served as a key regulator of fat usage, modulating pathways that control the consumption of fat and maintain a normal balance of fatty acid saturation. We found that the two phenotypes of the nhr-49 knockout were linked to distinct pathways and were separable: The high-fat phenotype was due to reduced expression of enzymes in fatty acid β-oxidation, and the shortened adult life span resulted from impaired expression of a stearoyl-CoA desaturase. Despite its sequence relationship with the mammalian hepatocyte nuclear factor 4 receptor, the biological activities of nhr-49 were most similar to those of the mammalian PPARs, implying an evolutionarily conserved role for NHRs in modulating fat consumption and composition. Our findings in C. elegans provide novel insights into how NHR regulatory networks are coordinated to govern fat metabolism.
机译:哺乳动物核激素受体(NHR),例如肝X受体,法呢素X受体和过氧化物酶体增殖物激活受体(PPAR),可以精确地控制能量代谢。因此,这些受体是治疗包括糖尿病和肥胖症在内的代谢疾病的重要靶标。然而,由于缺乏遗传上易处理的实验系统,对NHR脂肪调节网络的透彻了解受到了限制。在这里,我们显示秀丽隐杆线虫NHR基因nhr-49的删除产生的蠕虫具有较高的脂肪含量和缩短的寿命。利用定量RT-PCR筛选,我们发现nhr-49影响了参与能量代谢的13个基因的表达。实际上,nhr-49是脂肪使用的关键调节剂,调节了控制脂肪消耗并维持脂肪酸饱和度正常平衡的途径。我们发现,nhr-49基因敲除的两个表型与不同的途径相关,并且是可分离的:高脂表型是由于脂肪酸β-氧化酶的表达减少,而成年寿命的缩短是由于表达受损硬脂酰辅酶A去饱和酶尽管它与哺乳动物肝细胞核因子4受体具有序列关系,但nhr-49的生物学活性与哺乳动物PPAR的生物学活性最相似,这暗示NHR在调节脂肪消耗和组成方面具有进化上保守的作用。我们在秀丽隐杆线虫中的发现为NHR调节网络如何协调以控制脂肪代谢提供了新颖的见解。

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