Chang Hsin-Wen, Pisano Steve, Chaturbedi Amaresh, Chen Jennifer, Gordon Sarah, Baruah Aiswarya, Lee Siu Sylvia
Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY, 14853, USA.
Aging Cell. 2017 Aug;16(4):814-824. doi: 10.1111/acel.12619. Epub 2017 May 30.
A decline in mitochondrial electron transport chain (ETC) function has long been implicated in aging and various diseases. Recently, moderate mitochondrial ETC dysfunction has been found to prolong lifespan in diverse organisms, suggesting a conserved and complex role of mitochondria in longevity determination. Several nuclear transcription factors have been demonstrated to mediate the lifespan extension effect associated with partial impairment of the ETC, suggesting that compensatory transcriptional response to be crucial. In this study, we showed that the transcription factors CEP-1/p53 and CEH-23 act through a similar mechanism to modulate longevity in response to defective ETC in Caenorhabditis elegans. Genomewide gene expression profiling comparison revealed a new link between these two transcription factors and AAK-2/AMP kinase (AMPK) signaling. Further functional analyses suggested that CEP-1/p53 and CEH-23 act downstream of AAK-2/AMPK signaling and CRTC-1 transcriptional coactivator to promote stress resistance and lifespan. As AAK-2, CEP-1, and CEH-23 are all highly conserved, our findings likely provide important insights for understanding the organismal adaptive response to mitochondrial dysfunction in diverse organisms and will be relevant to aging and pathologies with a mitochondrial etiology in human.
线粒体电子传递链(ETC)功能的衰退长期以来一直被认为与衰老及多种疾病有关。最近,人们发现适度的线粒体ETC功能障碍能够延长多种生物体的寿命,这表明线粒体在寿命决定中具有保守且复杂的作用。已有研究证明,几种核转录因子介导了与ETC部分损伤相关的寿命延长效应,这表明补偿性转录反应至关重要。在本研究中,我们发现转录因子CEP-1/p53和CEH-23通过类似机制来调节秀丽隐杆线虫对有缺陷的ETC的反应,从而影响寿命。全基因组基因表达谱比较揭示了这两种转录因子与AAK-2/AMP激酶(AMPK)信号传导之间的新联系。进一步的功能分析表明,CEP-1/p53和CEH-23在AAK-2/AMPK信号传导及CRTC-1转录共激活因子的下游发挥作用,以促进应激抗性和延长寿命。由于AAK-2、CEP-1和CEH-23都具有高度保守性,我们的研究结果可能为理解不同生物体对线粒体功能障碍的机体适应性反应提供重要见解,并且与人类中具有线粒体病因的衰老和病理学相关。