Molecular Cancer Research, Center Molecular Medicine, University Medical Center Utrecht and the Oncode Institute, The Netherlands.
FEBS J. 2022 Dec;289(24):7918-7939. doi: 10.1111/febs.16221. Epub 2021 Oct 15.
Forkhead box O (FOXO) transcription factors (TFs) are a subclass of the larger family of forkhead TFs. Mammalians express four members FOXO1, FOXO3, FOXO4, and FOXO6. The interest in FOXO function stems mostly from their observed role in determining lifespan, where in model organisms, increased FOXO activity results in extended lifespan. FOXOs act as downstream of several signaling pathway and are extensively regulated through post-translational modifications. The transcriptional program activated by FOXOs in various cell types, organisms, and under various conditions has been described and has shed some light on what the critical transcriptional targets are in mediating FOXO function. At the cellular level, these studies have revealed a role for FOXOs in cell metabolism, cellular redox, cell proliferation, DNA repair, autophagy, and many more. The general picture that emerges hereof is that FOXOs act to preserve equilibrium, and they are important for cellular homeostasis. Here, we will first briefly summarize the general knowledge of FOXO regulation and possible functions. We will use genomic stability to illustrate how FOXOs ensure homeostasis. Genomic stability is critical for maintaining genetic integrity, and therefore preventing disease. However, genomic mutations need to occur during lifetime to enable evolution, yet their accumulation is believed to be causative to aging. Therefore, the role of FOXO in genomic stability may underlie its role in lifespan and aging. Finally, we will come up with questions on some of the unknowns in FOXO function, the answer(s) to which we believe will further our understanding of FOXO function and ultimately may help to understand lifespan and its consequences.
叉头框 O (FOXO) 转录因子 (TF) 是叉头 TF 大家族的一个亚类。哺乳动物表达四个成员 FOXO1、FOXO3、FOXO4 和 FOXO6。FOXO 功能的研究兴趣主要源于它们在决定寿命方面的观察作用,在模型生物中,增加 FOXO 活性会导致寿命延长。FOXOs 作为几种信号通路的下游因子,通过翻译后修饰得到广泛调节。FOXO 在各种细胞类型、生物和各种条件下激活的转录程序已经被描述,并揭示了在介导 FOXO 功能方面的关键转录靶标。在细胞水平上,这些研究揭示了 FOXOs 在细胞代谢、细胞氧化还原、细胞增殖、DNA 修复、自噬等方面的作用。由此产生的总体情况是,FOXOs 作用是维持平衡,它们对细胞内稳态很重要。在这里,我们将首先简要总结 FOXO 调节和可能功能的一般知识。我们将使用基因组稳定性来说明 FOXOs 如何确保内稳态。基因组稳定性对于维持遗传完整性至关重要,因此可预防疾病。然而,基因组突变需要在一生中发生才能促进进化,但它们的积累被认为是导致衰老的原因。因此,FOXO 在基因组稳定性中的作用可能是其在寿命和衰老中的作用的基础。最后,我们将提出一些关于 FOXO 功能未知的问题,我们相信这些问题的答案将进一步加深我们对 FOXO 功能的理解,并最终可能有助于理解寿命及其后果。