Department of Molecular and Cellular Biology, University of Arizona, Tucson, AZ 85721.
Cancer Biology Graduate Interdisciplinary Program, University of Arizona, Tucson, AZ 85719.
Mol Biol Cell. 2023 Mar 1;34(3):ar21. doi: 10.1091/mbc.E22-05-0193. Epub 2023 Feb 3.
FOXO transcription factors are regulators of cellular homeostasis linked to increased lifespan and tumor suppression. FOXOs are activated by diverse cell stresses including serum starvation and oxidative stress. FOXO activity is regulated through posttranslational modifications that control shuttling of FOXO proteins to the nucleus. In the nucleus, FOXOs up-regulate genes in multiple, often conflicting pathways, including cell-cycle arrest and apoptosis. How cells control FOXO activity to ensure the proper response for a given stress is an open question. Using quantitative immunofluorescence and live-cell imaging, we found that the dynamics of FOXO nuclear shuttling is stimulus-dependent and corresponds with cell fate. HO treatment leads to an all-or-none response where some cells show no nuclear FOXO accumulation, while other cells show a strong nuclear FOXO signal. The time that FOXO remains in the nucleus increases with the dose and is linked with cell death. In contrast, serum starvation causes low-amplitude pulses of nuclear FOXO and predominantly results in cell-cycle arrest. The accumulation of FOXO in the nucleus is linked with low AKT activity for both HO and serum starvation. Our findings suggest the dynamics of FOXO nuclear shuttling is one way in which the FOXO pathway dictates different cellular outcomes.
FOXO 转录因子是与寿命延长和肿瘤抑制相关的细胞稳态调节剂。FOXO 可被多种细胞应激激活,包括血清饥饿和氧化应激。FOXO 的活性通过翻译后修饰来调节,这些修饰控制 FOXO 蛋白向核内的穿梭。在核内,FOXO 上调多个,通常是相互冲突的途径中的基因,包括细胞周期停滞和细胞凋亡。细胞如何控制 FOXO 活性以确保对给定应激的适当反应是一个悬而未决的问题。通过定量免疫荧光和活细胞成像,我们发现 FOXO 核穿梭的动力学是刺激依赖性的,并与细胞命运相对应。HO 处理导致全有或全无的反应,一些细胞没有核 FOXO 积累,而其他细胞则显示出强烈的核 FOXO 信号。FOXO 在核内停留的时间随着剂量的增加而增加,并与细胞死亡有关。相比之下,血清饥饿会导致核 FOXO 的低幅度脉冲,主要导致细胞周期停滞。核内 FOXO 的积累与 HO 和血清饥饿时 AKT 活性降低有关。我们的研究结果表明,FOXO 核穿梭的动力学是 FOXO 通路决定不同细胞结果的一种方式。