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TAF-4 is required for the life extension of isp-1 clk-1 and tpk-1 Mit mutants

机译:需要TAF-4延长isp-1clk-1和tpk-1 Mit突变体的寿命

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摘要

While numerous life-extending manipulations have been discovered in the nematode Caenorhabditis elegans, one that remains most enigmatic is disruption of oxidative phosphorylation. In order to unravel how such an ostensibly deleterious manipulation can extend lifespan, we sought to identify the ensemble of nuclear transcription factors that are activated in response to defective mitochondrial electron transport chain (ETC) function. Using a feeding RNAi approach, we targeted over 400 transcription factors and identified 15 that, when reduced in function, reproducibly and differentially altered the development, stress response, and/or fecundity of isp-1(qm150) Mit mutants relative to wild-type animals. Seven of these transcription factors – AHA-1, CEH-18, HIF-1, JUN-1, NHR-27, NHR-49 and the CREB homolog-1 (CRH-1)-interacting protein TAF-4 – were also essential for isp-1 life extension. When we tested the involvement of these seven transcription factors in the life extension of two other Mit mutants, namely clk-1(qm30) and tpk-1(qm162), TAF-4 and HIF-1 were consistently required. Our findings suggest that the Mit phenotype is under the control of multiple transcriptional responses, and that TAF-4 and HIF-1 may be part of a general signaling axis that specifies Mit mutant life extension.
机译:虽然在线虫秀丽隐杆线虫中发现了许多延长寿命的操作,但最令人迷惑的一种是氧化磷酸化的破坏。为了弄清这种表面上有害的操作如何延长使用寿命,我们试图确定响应线粒体电子传输链(ETC)功能缺陷而激活的核转录因子的集合。我们使用馈入RNAi的方法,针对了400多个转录因子,确定了15个在功能降低时可重复和差异地改变了isp-1(qm150)Mit突变体相对于野生型的发育,应激反应和/或繁殖力的情况动物。这些转录因子中的七个-AHA-1,CEH-18,HIF-1,JUN-1,NHR-27,NHR-49和与CREB同系物1(CRH-1)相互作用的蛋白TAF-4也很重要。用于isp-1寿命延长。当我们测试这七个转录因子参与另外两个Mit突变体,即clk-1(qm30)和tpk-1(qm162)的寿命延长时,始终需要TAF-4和HIF-1。我们的发现表明,Mit表型受多种转录反应的控制,而TAF-4和HIF-1可能是指定Mit突变体寿命延长的一般信号转导轴的一部分。

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