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Rapamycin increases rDNA stability by enhancing association of Sir2 with rDNA in Saccharomyces cerevisiae

机译:雷帕霉素通过增强啤酒酵母中Sir2与rDNA的缔合来提高rDNA的稳定性

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The target of rapamycin (TOR) kinase is an evolutionarily conserved key regulator of eukaryotic cell growth and proliferation. Recently, it has been reported that inhibition of TOR signaling pathway can delay aging and extend lifespan in several eukaryotic organisms, but how lifespan extension is mediated by inhibition of TOR signaling is poorly understood. Here we report that rapamycin treatment and nitrogen starvation, both of which cause inactivation of TOR complex 1 (TORC1), lead to enhanced association of Sir2 with ribosomal DNA (rDNA) in Saccharomyces cerevisiae. TORC1 inhibition increases transcriptional silencing of RNA polymerase II-transcribed gene integrated at the rDNA locus and reduces homologous recombination between rDNA repeats that causes formation of toxic extrachromosomal rDNA circles. In addition, TORC1 inhibition induces deacetylation of histones at rDNA. We also found that Pnc1 and Net1 are required for enhancement of association of Sir2 with rDNA under TORC1 inhibition. Taken together, our findings suggest that inhibition of TORC1 signaling stabilizes the rDNA locus by enhancing association of Sir2 with rDNA, thereby leading to extension of replicative lifespan in S. cerevisiae.
机译:雷帕霉素(TOR)激酶的靶标是真核细胞生长和增殖的进化保守关键调节剂。近来,已经报道了在几种真核生物中抑制TOR信号传导途径可以延缓衰老并延长其寿命,但是人们对如何通过抑制TOR信号传导来延长寿命的了解却很少。在这里我们报告雷帕霉素治疗和氮饥饿,这两者都导致TOR复合物1(TORC1)失活,导致酿酒酵母中Sir2与核糖体DNA(rDNA)的结合增强。 TORC1抑制作用增加了整合在rDNA基因座上的RNA聚合酶II转录基因的转录沉默,并降低了rDNA重复序列之间的同源重组,从而导致形成有毒的染色体外rDNA环。此外,TORC1抑制作用可诱导rDNA处的组蛋白脱乙酰化。我们还发现在TORC1抑制下,Snc2与rDNA的缔合需要Pnc1和Net1。两者合计,我们的发现表明,TORC1信号的抑制通过增强Sir2与rDNA的缔合来稳定rDNA基因座,从而延长酿酒酵母的复制寿命。

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