首页> 美国卫生研究院文献>PLoS Genetics >DAF-16/FoxO Directly Regulates an Atypical AMP-Activated Protein Kinase Gamma Isoform to Mediate the Effects of Insulin/IGF-1 Signaling on Aging in Caenorhabditis elegans
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DAF-16/FoxO Directly Regulates an Atypical AMP-Activated Protein Kinase Gamma Isoform to Mediate the Effects of Insulin/IGF-1 Signaling on Aging in Caenorhabditis elegans

机译:DAF-16 / FoxO直接调节非典型AMP激活的蛋白激酶Gamma亚型以介导胰岛素/ IGF-1信号转导对秀丽隐杆线虫的衰老的影响。

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摘要

The DAF-16/FoxO transcription factor controls growth, metabolism and aging in Caenorhabditis elegans. The large number of genes that it regulates has been an obstacle to understanding its function. However, recent analysis of transcript and chromatin profiling implies that DAF-16 regulates relatively few genes directly, and that many of these encode other regulatory proteins. We have investigated the regulation by DAF-16 of genes encoding the AMP-activated protein kinase (AMPK), which has α, β and γ subunits. C. elegans has 5 genes encoding putative AMP-binding regulatory γ subunits, aakg-1-5. aakg-4 and aakg-5 are closely related, atypical isoforms, with orthologs throughout the Chromadorea class of nematodes. We report that ∼75% of total γ subunit mRNA encodes these 2 divergent isoforms, which lack consensus AMP-binding residues, suggesting AMP-independent kinase activity. DAF-16 directly activates expression of aakg-4, reduction of which suppresses longevity in daf-2 insulin/IGF-1 receptor mutants. This implies that an increase in the activity of AMPK containing the AAKG-4 γ subunit caused by direct activation by DAF-16 slows aging in daf-2 mutants. Knock down of aakg-4 expression caused a transient decrease in activation of expression in multiple DAF-16 target genes. This, taken together with previous evidence that AMPK promotes DAF-16 activity, implies the action of these two metabolic regulators in a positive feedback loop that accelerates the induction of DAF-16 target gene expression. The AMPK β subunit, aakb-1, also proved to be up-regulated by DAF-16, but had no effect on lifespan. These findings reveal key features of the architecture of the gene-regulatory network centered on DAF-16, and raise the possibility that activation of AMP-independent AMPK in nutritionally replete daf-2 mutant adults slows aging in C. elegans. Evidence of activation of AMPK subunits in mammals suggests that such FoxO-AMPK interactions may be evolutionarily conserved.
机译:DAF-16 / FoxO转录因子控制秀丽隐杆线虫的生长,代谢和衰老。它调节的大量基因一直是理解其功能的障碍。但是,最近对转录本和染色质图谱的分析表明,DAF-16直接调节相对较少的基因,并且其中许多编码其他调节蛋白。我们已经研究了DAF-16对编码AMP激活的蛋白激酶(AMPK)的基因的调控,该蛋白具有α,β和γ亚基。秀丽隐杆线虫具有编码假定的AMP结合调节性γ亚基aakg-1-5的5个基因。 aakg-4和aakg-5是紧密相关的非典型同工型,在整个Chromadorea类线虫中与直系同源物。我们报告说,总γ亚基mRNA的约75%编码了这2个不同的同工型,它们缺乏共有的AMP结合残基,表明AMP依赖性激酶活性。 DAF-16直接激活aakg-4的表达,其降低会抑制daf-2胰岛素/ IGF-1受体突变体的寿命。这表明由DAF-16直接激活引起的含有AAKG-4γ亚基的AMPK活性的增加减慢了daf-2突变体的衰老。敲断aakg-4表达导致多个DAF-16靶基因表达激活的瞬时降低。这与AMPK促进DAF-16活性的先前证据一起,暗示了这两个代谢调节剂在正反馈回路中的作用,从而加速了DAF-16靶基因表达的诱导。 AMPKβ亚基aakb-1也被DAF-16上调,但对寿命没有影响。这些发现揭示了以DAF-16为中心的基因调控网络架构的关键特征,并增加了在营养丰富的daf-2突变体成虫中激活不依赖AMP的AMPK减缓秀丽线虫衰老的可能性。哺乳动物中AMPK亚基激活的证据表明,此类FoxO-AMPK相互作用可能在进化上是保守的。

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