Alic Nazif, Giannakou Maria E, Papatheodorou Irene, Hoddinott Matthew P, Andrews T Daniel, Bolukbasi Ekin, Partridge Linda
Institute of Healthy Ageing, and GEE, University College London, London, United Kingdom.
Institute of Healthy Ageing, and GEE, University College London, London, United Kingdom; EMBL - European Bioinformatics Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge, United Kingdom.
PLoS Genet. 2014 Sep 18;10(9):e1004619. doi: 10.1371/journal.pgen.1004619. eCollection 2014 Sep.
Forkhead box O (FoxO) transcription factors (TFs) are key drivers of complex transcriptional programmes that determine animal lifespan. FoxOs regulate a number of other TFs, but how these TFs in turn might mediate the anti-ageing programmes orchestrated by FoxOs in vivo is unclear. Here, we identify an E-twenty six (ETS)-family transcriptional repressor, Anterior open (Aop), as regulated by the single Drosophila melanogaster FoxO (dFOXO) in the adult gut. AOP, the functional orthologue of the human Etv6/Tel protein, binds numerous genomic sites also occupied by dFOXO and counteracts the activity of an ETS activator, Pointed (Pnt), to prevent the lifespan-shortening effects of co-activation of dFOXO and PNT. This detrimental synergistic effect of dFOXO and PNT appears to stem from a mis-regulation of lipid metabolism. At the same time, AOP activity in another fly organ, the fat body, has further beneficial roles, regulating genes in common with dfoxo, such as the secreted, non-sensory, odorant binding protein (Obp99b), and robustly extending lifespan. Our study reveals a complex interplay between evolutionarily conserved ETS factors and dFOXO, the functional significance of which may extend well beyond animal lifespan.
叉头框O(FoxO)转录因子是决定动物寿命的复杂转录程序的关键驱动因素。FoxO调节许多其他转录因子,但这些转录因子如何反过来介导FoxO在体内精心编排的抗衰老程序尚不清楚。在这里,我们鉴定出一种E26(ETS)家族转录抑制因子“前部开放”(Aop),它在成年果蝇肠道中受单个果蝇FoxO(dFOXO)调控。AOP是人类Etv6/Tel蛋白的功能同源物,它结合许多也被dFOXO占据的基因组位点,并对抗ETS激活因子“尖头”(Pnt)的活性,以防止dFOXO和PNT共同激活导致的寿命缩短效应。dFOXO和PNT这种有害的协同效应似乎源于脂质代谢的失调。与此同时,AOP在果蝇的另一个器官脂肪体中的活性具有进一步的有益作用,它调控与dFOXO共同的基因,如分泌型、非感官型气味结合蛋白(Obp99b),并显著延长寿命。我们的研究揭示了进化上保守的ETS因子与dFOXO之间复杂的相互作用,其功能意义可能远远超出动物寿命。