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通过对秀丽隐杆线虫异构体特异性 daf-16/FoxO 突变体的综合分析揭示长寿基因。

Longevity Genes Revealed by Integrative Analysis of Isoform-Specific daf-16/FoxO Mutants of Caenorhabditis elegans.

机构信息

Department of Internal Medicine, University of Michigan Medical School, Ann Arbor, Michigan 48109.

Knudra Transgenics, Murray, Utah 84123.

出版信息

Genetics. 2015 Oct;201(2):613-29. doi: 10.1534/genetics.115.177998. Epub 2015 Jul 27.

Abstract

FoxO transcription factors promote longevity across taxa. How they do so is poorly understood. In the nematode Caenorhabditis elegans, the A- and F-isoforms of the FoxO transcription factor DAF-16 extend life span in the context of reduced DAF-2 insulin-like growth factor receptor (IGFR) signaling. To elucidate the mechanistic basis for DAF-16/FoxO-dependent life span extension, we performed an integrative analysis of isoform-specific daf-16/FoxO mutants. In contrast to previous studies suggesting that DAF-16F plays a more prominent role in life span control than DAF-16A, isoform-specific daf-16/FoxO mutant phenotypes and whole transcriptome profiling revealed a predominant role for DAF-16A over DAF-16F in life span control, stress resistance, and target gene regulation. Integration of these datasets enabled the prioritization of a subset of 92 DAF-16/FoxO target genes for functional interrogation. Among 29 genes tested, two DAF-16A-specific target genes significantly influenced longevity. A loss-of-function mutation in the conserved gene gst-20, which is induced by DAF-16A, reduced life span extension in the context of daf-2/IGFR RNAi without influencing longevity in animals subjected to control RNAi. Therefore, gst-20 promotes DAF-16/FoxO-dependent longevity. Conversely, a loss-of-function mutation in srr-4, a gene encoding a seven-transmembrane-domain receptor family member that is repressed by DAF-16A, extended life span in control animals, indicating that DAF-16/FoxO may extend life span at least in part by reducing srr-4 expression. Our discovery of new longevity genes underscores the efficacy of our integrative strategy while providing a general framework for identifying specific downstream gene regulatory events that contribute substantially to transcription factor functions. As FoxO transcription factors have conserved functions in promoting longevity and may be dysregulated in aging-related diseases, these findings promise to illuminate fundamental principles underlying aging in animals.

摘要

FoxO 转录因子在多个分类群中促进长寿。它们的作用方式还不太清楚。在线虫秀丽隐杆线虫中,FoxO 转录因子 DAF-16 的 A 和 F 异构体在降低 DAF-2 胰岛素样生长因子受体 (IGFR) 信号的情况下延长寿命。为了阐明 DAF-16/FoxO 依赖性寿命延长的机制基础,我们对同工型特异性 daf-16/FoxO 突变体进行了综合分析。与先前的研究表明 DAF-16F 在寿命控制中比 DAF-16A 发挥更重要的作用不同,同工型特异性 daf-16/FoxO 突变体表型和全转录组分析显示,DAF-16A 在寿命控制、应激抗性和靶基因调节中起主要作用,而不是 DAF-16F。这些数据集的整合使得能够优先对一组 92 个 DAF-16/FoxO 靶基因进行功能研究。在测试的 29 个基因中,有两个 DAF-16A 特异性靶基因对寿命有显著影响。保守基因 gst-20 的功能丧失突变,该基因受 DAF-16A 诱导,在 daf-2/IGFR RNAi 背景下降低了寿命延长,但在接受对照 RNAi 的动物中不影响寿命。因此,gst-20 促进了 DAF-16/FoxO 依赖性的长寿。相反,编码一种七跨膜域受体家族成员的基因 srr-4 的功能丧失突变,该基因受 DAF-16A 抑制,延长了对照动物的寿命,表明 DAF-16/FoxO 至少部分通过降低 srr-4 表达来延长寿命。我们发现新的长寿基因,突出了我们综合策略的有效性,同时为鉴定对转录因子功能有重大贡献的特定下游基因调控事件提供了一个通用框架。由于 FoxO 转录因子在促进长寿方面具有保守功能,并且可能在与衰老相关的疾病中失调,这些发现有望阐明动物衰老的基本原理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ead/4596673/80913cf0a00c/613fig1.jpg

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