Williams Travis W, Dumas Kathleen J, Hu Patrick J
Life Sciences Institute, University of Michigan, Ann Arbor, 48109, USA.
Aging (Albany NY). 2010 Oct;2(10):742-7. doi: 10.18632/aging.100214.
FoxO transcription factors (TFs) extend lifespan in invertebrates and may participate in the control of human longevity. The role of FoxO TFs in lifespan regulation has been studied most extensively inC. elegans, where a conserved insulin/insulin-like growth factor signaling (IIS) pathway and the germline both control lifespan by regulating the subcellular localization of the FoxO transcription factor DAF-16. Although the control of FoxO activity through modulation of its subcellular localization is well established, nuclear translocation of FoxO is not sufficient for full FoxO activation, suggesting that undiscovered inputs regulate FoxO activity after its translocation to the nucleus. We have recently discovered a new conserved pathway, the EAK (enhancer-of-akt-1) pathway, which acts in parallel to the Akt/PKB family of serine-threonine kinases to regulate DAF-16/FoxO activity. Whereas mutation of Akt/PKB promotes the nuclear accumulation of DAF-16/FoxO, mutation of eak genes increases nuclear DAF-16/FoxO activity without influencing DAF-16/FoxO subcellular localization. Thus, EAK proteins regulate the activity of nuclear DAF-16/FoxO. Two EAK proteins, EAK-2/HSD-1 and EAK-7, influence C. elegans lifespan and are conserved in mammals. The discovery of the EAK pathway defines a new conserved FoxO regulatory input and may have implications relevant to aging and the pathogenesis of aging-associated diseases.
叉头框O转录因子(TFs)可延长无脊椎动物的寿命,并可能参与对人类长寿的调控。在秀丽隐杆线虫中,对叉头框O转录因子在寿命调控中的作用研究最为广泛,在该线虫中,保守的胰岛素/胰岛素样生长因子信号传导(IIS)通路和生殖系均通过调节叉头框O转录因子DAF-16的亚细胞定位来控制寿命。尽管通过调节其亚细胞定位来控制叉头框O的活性已得到充分证实,但叉头框O的核转位并不足以实现其完全激活,这表明在其转位至细胞核后,存在尚未被发现的调控叉头框O活性的输入信号。我们最近发现了一条新的保守通路,即EAK(akt-1增强子)通路,它与丝氨酸-苏氨酸激酶的Akt/PKB家族平行发挥作用,以调节DAF-16/叉头框O的活性。Akt/PKB的突变会促进DAF-16/叉头框O的核积累,而eak基因的突变则会增加核内DAF-16/叉头框O的活性,而不影响DAF-16/叉头框O的亚细胞定位。因此,EAK蛋白调节核内DAF-16/叉头框O的活性。两种EAK蛋白,即EAK-2/HSD-1和EAK-7,影响秀丽隐杆线虫的寿命,并且在哺乳动物中保守存在。EAK通路的发现定义了一种新的保守的叉头框O调控输入信号,可能与衰老及衰老相关疾病的发病机制有关。