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首页> 外文期刊>Eukaryotic cell >Crm1-Mediated Nuclear Export of the Schizosaccharomyces pombe Transcription Factor Cuf1 during a Shift from Low to High Copper Concentrations
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Crm1-Mediated Nuclear Export of the Schizosaccharomyces pombe Transcription Factor Cuf1 during a Shift from Low to High Copper Concentrations

机译:Crm1介导的粟酒裂殖酵母转录因子Cuf1的核出口在从低到高铜浓度的转变过程中

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In this study, we examine the fate of the nuclear pool of the Schizosaccharomyces pombe transcription factor Cuf1 in response to variations in copper levels. A nuclear pool of Cuf1-green fluorescent protein (GFP) was generated by expressing a functional cuf1+-GFP allele in the presence of a copper chelator. We then extinguished cuf1+-GFP expression and tracked the changes in the localization of the nuclear pool of Cuf1-GFP in the presence of low or high copper concentrations. Treating cells with copper as well as silver ions resulted in the nuclear export of Cuf1. We identified a leucine-rich nuclear export signal (NES), 349LAALNHISAL358, within the C-terminal region of Cuf1. Mutations in this sequence abrogated Cuf1 export from the nucleus. Furthermore, amino acid substitutions that impair Cuf1 NES function resulted in increased target gene expression and a concomitant cellular hypersensitivity to copper. Export of the wild-type Cuf1 protein was inhibited by leptomycin B (LMB), a specific inhibitor of the nuclear export protein Crm1. We further show that cells expressing a temperature-sensitive mutation in crm1+ exhibit increased nuclear accumulation of Cuf1 at the nonpermissive temperature. Although wild-type Cuf1 is localized in the nucleus in both conditions, we observed that the protein can still be inactivated by copper, resulting in the repression of ctr4+ gene expression in the presence of exogenous copper. These results demonstrate that nuclear accumulation of Cuf1 per se is not sufficient to cause the unregulated expression of the copper transport genes like ctr4+. In addition to nuclear localization, a functional Cys-rich domain or NES element in Cuf1 is required to appropriately regulate copper transport gene expression in response to changes in intracellular copper concentration.
机译:在这项研究中,我们研究了响应于铜水平变化的粟酒裂殖酵母转录因子Cuf1核库的命运。通过表达功能性 cuf1 + - GFP 生成Cuf1绿色荧光蛋白(GFP)的核库。铜螯合剂存在下的等位基因。然后我们熄灭 cuf1 + - GFP 表达并追踪Cuf1核库定位的变化。在低或高铜浓度下存在GFP。用铜以及银离子处理细胞会导致Cuf1的核输出。我们在Cuf1的C端区域鉴定了一个富含亮氨酸的核输出信号(NES), 349 LAALNHISAL 358 。该序列的突变消除了Cuf1从细胞核中的输出。此外,损害Cuf1 NES功能的氨基酸取代导致靶基因表达增加,并伴随细胞对铜过敏。野生型Cuf1蛋白的输出受到瘦素B(LMB)的抑制,瘦素B是核输出蛋白Crm1的特异性抑制剂。我们进一步表明在 crm1 + 中表达温度敏感突变的细胞在非允许温度下表现出增加的Cuf1核积累。尽管在两种情况下野生型Cuf1均位于细胞核中,但我们观察到该蛋白质仍可被铜灭活,从而导致 ctr4 + 的抑制在外源铜存在下的基因表达。这些结果表明,Cuf1本身的核积累不足以引起 ctr4 + 等铜转运基因的失控表达。除了核定位外,还需要Cuf1中的功能性Cys富集结构域或NES元素来适当调节铜转运基因的表达,以响应细胞内铜浓度的变化。

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