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Transcription Factors Pcr1 and Atf1 Have Distinct Roles in Stress- and Sty1-Dependent Gene Regulation

机译:转录因子Pcr1和Atf1在应激和Sty1依赖性基因调节中具有不同的作用。

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The mitogen-activated protein kinase Sty1 is essential for the regulation of transcriptional responses that promote cell survival in response to different types of environmental stimuli in Schizosaccharomyces pombe. Upon stress activation, Sty1 reversibly accumulates in the nucleus, where it stimulates gene expression via the Atf1 transcription factor. The Atf1 protein forms a heterodimer with Pcr1, but the specific role of this association is controversial. We have carried out a comparative analysis of strains lacking these proteins individually. We demonstrate that Atf1 and Pcr1 have similar but not identical roles in S. pombe, since cells lacking Pcr1 do not share all the phenotypes reported for Δatf1 cells. Northern blot and microarray analyses demonstrate that the responses to specific stresses of cells lacking either Pcr1 or Atf1 do not fully overlap, and even though most Atf1-dependent genes induced by osmotic stress are also Pcr1 dependent, a subset of genes require only the presence of Atf1 for their induction. Whereas binding of Atf1 to most stress-dependent genes requires the presence of Pcr1, we demonstrate here that Atf1 can bind to the Pcr1-independent promoters in a Δpcr1 strain in vivo. Furthermore, these analyses show that both proteins have a global repressive effect on stress-dependent and stress-independent genes.
机译:有丝分裂原激活的蛋白激酶Sty1对于调节裂殖酵母中不同类型的环境刺激而促进细胞存活的转录应答的调节至关重要。应激激活后,Sty1可逆地积累在细胞核中,并通过Atf1转录因子刺激基因表达。 Atf1蛋白与Pcr1形成异源二聚体,但是这种结合的具体作用尚有争议。我们对缺少这些蛋白质的菌株进行了比较分析。我们证明Atf1和Pcr1在 S中具有相似但不相同的作用。 pombe ,因为缺少Pcr1的细胞并不共享Δ atf1 细胞的所有表型。 Northern印迹和微阵列分析表明,缺乏Pcr1或Atf1的细胞对特定应激的反应不会完全重叠,即使大多数由渗透压诱导的Atf1依赖性基因也是Pcr1依赖性的,但是一部分基因只需要存在Pcr1即可。 Atf1对其进行归纳。 Atf1与大多数胁迫依赖性基因的结合需要Pcr1的存在,我们在这里证明Atf1可以与Δ pcr1 菌株体内的Pcr1非依赖性启动子结合。此外,这些分析表明,两种蛋白均对压力依赖性和压力依赖性基因具有全局抑制作用。

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