Anderson Edward N, Corkins Mark E, Li Jia-Cheng, Singh Komudi, Parsons Sadé, Tucey Tim M, Sorkaç Altar, Huang Huiyan, Dimitriadi Maria, Sinclair David A, Hart Anne C
Department of Neuroscience, Brown University, 185 Meeting Street, Providence, RI 02912, USA.
Department of Genetics, Harvard Medical School and Glenn Labs for Aging Research, Boston, MA 02115, USA.
Mech Ageing Dev. 2016 Mar;154:30-42. doi: 10.1016/j.mad.2016.01.004. Epub 2016 Feb 22.
Moderate stress can increase lifespan by hormesis, a beneficial low-level induction of stress response pathways. 5'-fluorodeoxyuridine (FUdR) is commonly used to sterilize Caenorhabditis elegans in aging experiments. However, FUdR alters lifespan in some genotypes and induces resistance to thermal and proteotoxic stress. We report that hypertonic stress in combination with FUdR treatment or inhibition of the FUdR target thymidylate synthase, TYMS-1, extends C. elegans lifespan by up to 30%. By contrast, in the absence of FUdR, hypertonic stress decreases lifespan. Adaptation to hypertonic stress requires diminished Notch signaling and loss of Notch co-ligands leads to lifespan extension only in combination with FUdR. Either FUdR treatment or TYMS-1 loss induced resistance to acute hypertonic stress, anoxia, and thermal stress. FUdR treatment increased expression of DAF-16 FOXO and the osmolyte biosynthesis enzyme GPDH-1. FUdR-induced hypertonic stress resistance was partially dependent on sirtuins and base excision repair (BER) pathways, while FUdR-induced lifespan extension under hypertonic stress conditions requires DAF-16, BER, and sirtuin function. Combined, these results demonstrate that FUdR, through inhibition of TYMS-1, activates stress response pathways in somatic tissues to confer hormetic resistance to acute and chronic stress. C. elegans lifespan studies using FUdR may need re-interpretation in light of this work.
适度应激可通过应激适应作用延长寿命,这是一种对应激反应途径有益的低水平诱导。在衰老实验中,5'-氟脱氧尿苷(FUdR)常用于使秀丽隐杆线虫绝育。然而,FUdR会改变某些基因型的寿命,并诱导对热应激和蛋白毒性应激的抗性。我们报告称,高渗应激与FUdR处理或对FUdR靶标胸苷酸合成酶TYMS-1的抑制相结合,可使秀丽隐杆线虫的寿命延长高达30%。相比之下,在没有FUdR的情况下,高渗应激会缩短寿命。适应高渗应激需要Notch信号减弱,而Notch共配体的缺失仅在与FUdR结合时才会导致寿命延长。FUdR处理或TYMS-1缺失均可诱导对急性高渗应激、缺氧和热应激的抗性。FUdR处理会增加DAF-16 FOXO和渗透压生物合成酶GPDH-1的表达。FUdR诱导的高渗应激抗性部分依赖于沉默调节蛋白和碱基切除修复(BER)途径,而在高渗应激条件下FUdR诱导的寿命延长则需要DAF-16、BER和沉默调节蛋白的功能。综合来看,这些结果表明,FUdR通过抑制TYMS-1,激活体细胞组织中的应激反应途径,从而赋予对急性和慢性应激的应激适应抗性。鉴于这项工作,使用FUdR进行的秀丽隐杆线虫寿命研究可能需要重新解释。