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Nucleocytoplasmic translocation of Stat1 is regulated by a leucine-rich export signal in the coiled-coil domain

机译:Stat1的胞质易位受卷曲螺旋域中富含亮氨酸的输出信号调控

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摘要

Signal transducer and activator of transcription (Stat) proteins are latent transcription factors that reside in the cytoplasm before activation. On cytokine-induced tyrosine phosphorylation, these molecules dimerize and accumulate transiently in the nucleus. No specific signals mediating these processes have been identified to date. In this report, we examine the nuclear export of Stat1. We find that treatment of cells with the export inhibitor leptomycin B does not affect steady-state localization of Stat1 but impedes nuclear export after IFNγ-induced nuclear accumulation. We identify a conserved leucine-rich helical segment in the coiled-coil domain of Stat1, which is responsible for the efficient nuclear export of this protein. Mutation of two hallmark leucines within this segment greatly attenuate the back transport of Stat1 in the cytoplasm. When fused to a carrier protein, the Stat1 export sequence can mediate nuclear export after intranuclear microinjection. We show that prolonging the nuclear presence of Stat1 by inhibiting nuclear export reduces the transcriptional response to stimulation with IFNγ. These data suggest that Stats are actively exported from the nucleus via several separate pathways and link this activity to transcriptional activation.
机译:信号转导子和转录激活因子(Stat)是潜在的转录因子,在激活之前位于细胞质中。在细胞因子诱导的酪氨酸磷酸化后,这些分子二聚化并在核内瞬时积累。迄今为止,尚未发现介导这些过程的具体信号。在本报告中,我们研究了Stat1的核出口。我们发现用出口抑制剂瘦霉素B处理细胞不会影响Stat1的稳态定位,但会在IFNγ诱导的核积累后阻碍核输出。我们在Stat1的卷曲螺旋结构域中确定了一个富含亮氨酸的保守螺旋段,该段负责该蛋白的有效核输出。该段内两个标志性亮氨酸的突变大大减弱了Stat1在细胞质中的反向转运。当与载体蛋白融合时,Stat1输出序列可以在核内显微注射后介导核输出。我们表明,通过抑制核输出来延长Stat1的核存在会降低对IFNγ刺激的转录反应。这些数据表明,Stats通过几种单独的途径从细胞核中活跃地输出,并将这种活性与转录激活联系起来。

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