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Genome-wide RNAi analysis of Caenorhabditis elegans fat regulatory genes

机译:秀丽隐杆线虫脂肪调节基因的全基因组RNAi分析

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Regulation of body fat storage involves signalling between centres that regulate feeding in the brain and sites of fat storage and use in the body. Here we describe an assay for analysing fat storage and mobilization in living Caenorhabditis elegans. By using RNA-mediated interference (RNAi) to disrupt the expression of each of the 16,757 worm genes, we have systematically screened the C. elegans genome for genes necessary for normal fat storage. We identify 305 gene inactivations that cause reduced body fat and 112 gene inactivations that cause increased fat storage. Analysis of the fat-reducing gene inactivations in insulin, serotonin and tubby signalling mutants of C. elegans, which have increased body fat, identifies a core set of fat regulatory genes as well as pathway-specific fat regulators. Many of the newly identified worm fat regulatory genes have mammalian homologues, some of which are known to function in fat regulation. Other C. elegans fat regulatory genes that are conserved across animal phylogeny, but have not previously been implicated in fat storage, may point to ancient and universal features of fat storage regulation, and identify targets for treating obesity and its associated diseases.
机译:体内脂肪储存的调节涉及调节大脑进食的各个中心与体内脂肪储存和使用部位之间的信号传递。在这里,我们描述了一种分析生活中秀丽隐杆线虫中脂肪存储和动员的分析方法。通过使用RNA介导的干扰(RNAi)破坏每个16,757蠕虫基因的表达,我们已经系统地筛选了秀丽隐杆线虫基因组中正常脂肪储存所必需的基因。我们确定了305种导致体内脂肪减少的基因失活和112种导致脂肪储存增加的基因失活。体内脂肪增加的秀丽隐杆线虫的胰岛素,5-羟色胺和tubby信号突变体中的减少脂肪的基因失活的分析,确定了一组脂肪调节基因以及途径特异性脂肪调节剂。许多新近发现的蠕虫脂肪调节基因具有哺乳动物同源物,其中一些已知在脂肪调节中起作用。其他线虫脂肪调节基因在动物系统发育中是保守的,但以前并未参与脂肪储存,可能指向古老且普遍的脂肪储存调节特征,并确定了治疗肥胖症及其相关疾病的靶标。

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