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Heat shock factor 1 is inactivated by amino acid deprivation

机译:热休克因子1被氨基酸剥夺灭活

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Mammalian cells respond to a lack of amino acids by activating a transcriptional program with the transcription factor ATF4 as one of the main actors. When cells are faced with cytoplasmic proteotoxic stress, a quite different transcriptional response is mounted, the heat shock response, which is mediated by HSF1. Here, we show that amino acid deprivation results in the inactivation of HSF1. In amino acid deprived cells, active HSF1 loses its DNA binding activity as demonstrated by EMSA and ChIP. A sharp decrease in the transcript level of HSF1 target genes such as HSPA1A (Hsp70), DNAJB1 (Hsp40), and HSP90AA1 is also seen. HSPA1A mRNA, but not DNAJB1 mRNA, was also destabilized. In cells cultured with limiting leucine, HSF1 activity also declined. Lack of amino acids thus could lead to a lower chaperoning capacity and cellular frailty. We show that the nutrient sensing response unit of the ASNS gene contains an HSF1 binding site, but we could not detect binding of HSF1 to this site in vivo. Expression of either an HSF1 mutant lacking the activation domain (HSF379) or an HSF1 mutant unable to bind DNA (K80Q) had only a minor effect on the transcript levels of amino acid deprivation responsive genes.
机译:哺乳动物细胞通过激活转录因子ATF4作为主要因子之一的转录程序来应对氨基酸的缺乏。当细胞面对细胞质蛋白毒性应激时,会发生完全不同的转录反应,即由HSF1介导的热休克反应。在这里,我们表明氨基酸剥夺导致HSF1失活。如EMSA和ChIP所示,在氨基酸被剥夺的细胞中,活性HSF1失去了其DNA结合活性。还可以看到HSF1目标基因(例如HSPA1A(Hsp70),DNAJB1(Hsp40)和HSP90AA1)的转录水平急剧下降。 HSPA1A mRNA,但不是DNAJB1 mRNA,也不稳定。在用有限的亮氨酸培养的细胞中,HSF1活性也下降了。因此缺乏氨基酸可能导致较低的伴侣能力和细胞衰弱。我们显示,ASNS基因的营养物感应响应单元包含一个HSF1结合位点,但我们无法在体内检测到HSF1与该位点的结合。缺少激活域的HSF1突变体(HSF379)或无法结合DNA的HSF1突变体(K80Q)的表达对氨基酸剥夺反应基因的转录水平只有很小的影响。

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